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Zinc Sulphide Powder
Product Name Zinc Sulphide Powder
Catalog No NCZ-NSC310/20 CAS No 1314-98-3 Purity 99.9% APS 5µm, 3µm (Customizable) Molecular Formula ZnS Molecular weight 97.4 g/mol Appearance Powder Color White Density 4.09 g/cm³ Melting Point 1,185 °C Zinc Sulphide Powder Description
Zinc sulfide Powder is an inorganic compound with the chemical formula of ZnS. This is the main form of zinc found in nature, where it mainly occurs as the mineral sphalerite. Although this mineral is usually black because of various impurities, the pure material is white, and it is widely used as a pigment. In its dense synthetic form, zinc sulfide can be transparent, and it is used as a window for visible optics and infrared optics.
Both sphalerite and wurtzite are intrinsic, wide-bandgap semiconductors. These are prototypical semiconductors, and they adopt structures related to many of the other semiconductors, such as gallium arsenide. The cubic form of ZnS has a bandgap of about electron volts at 300 kelvins, but the hexagonal form has a bandgap of about electron volts.
ZnS can be doped as either an n-type semiconductor or a p-type semiconductor. Fine ZnS powder is an efficient photocatalyst, which produces hydrogen gas from water upon illumination. Sulfur vacancies can be introduced in ZnS during its synthesis; this gradually turns the white-yellowish ZnS into a brown powder, and boosts the photocatalytic activity through enhanced light absorption Zinc sulfidic, with the addition of few ppm of suitable activator, exhibits strong phosphorescence, and is currently used in many applications, from cathode ray tubes through X-ray screens to glow in the dark products. When silver is used as an activator, the resulting color is bright blue, with a maximum at 450 nanometres.
Zinc Sulphide Related Information
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Product Name: Tungsten Titanium Carbide Powder:
Product Name Tungsten Titanium Carbide Powder Catalog No. NCZ-NSC312/20 CAS No. 12070-08-5 Purity 99.9% APS 1µm (Customizable) Molecular Formula WTiC Molecular weight 59.89 g/mol Appearance Powder Color Black Powder Density 4.93 g/cm3 Melting Point 3,160 °C Tungsten Titanium Carbide Powder Description:
Titanium carbide, TiC, is an extremely hard refractory ceramic material, similar to tungsten carbide. It has the appearance of black powder with the sodium chloride (face-cantered cubic) crystal structure.
As found in nature its crystals range in size from 0.1 to 0.3 mm. It occurs in nature as a form of very rare. The mineral was named after Ibrahim director of Geology and Geophysics of Tashkent.
Titanium carbide is used in the preparation of cermets, which are frequently used to machine steel materials at high cutting speed.
It is also used as an abrasion-resistant surface coating on metal parts, such as tool bits and watch mechanisms.
Titanium carbide is also used as a heat shield coating for atmospheric reentry of spacecraft. 7075 aluminum alloy (AA7075) is almost as strong as steel but weighs one third as much.
Using thin AA7075 rods with TiC nanoparticles allows larger alloys pieces to be welded without phase-segregation induced cracks.
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Product Name: Tungsten Carbide Cobalt Powder
Product Name Tungsten Carbide Cobalt Powder Catalog No. NCZ-NSC308/20 CAS No. 12774-15-1 Purity 99.9% APS 28µm, 400µm (Customizable) Molecular Formula WC-Co Molecular weight 258.8 g/mol Appearance Powder Color Gray Powder Density 3.9 g/cm3 Melting Point 2867°C Boiling Point 6000°C Tungsten Carbide Cobalt Powder Description
Tungsten carbide cobalt (WC-CO) is an alloy of a hard-ceramic phase, the tungsten carbide (WC), and a ductile metallic phase, the cobalt.
Important properties of WC-Co are hardness, strength, high breaking, and beating ductility as well as high electrical and thermal conductivity.
Tungsten carbide is a chemical compound (specifically, a carbide) containing equal parts of tungsten and carbon atoms.
In its most basic form, tungsten carbide is a fine gray powder, but it can be pressed and formed into shapes through a process called sintering for use in industrial machinery, cutting tools, abrasives, armor-piercing shells and jewelry.
Tungsten carbide is approximately twice as stiff as steel, with Young’s modulus of approximately and is double the density of steel nearly midway between that of lead and gold.
It is comparable with corundum in hardness and can only be polished and finished with abrasives of superior hardness such as cubic boron nitride and diamond powder, wheels, and compounds.
Tungsten Carbide Cobalt Powder Related Information
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Titanium Boride Micro Powder
Product Name Titanium Boride Micro Powder
Catalog No. NCZ-NSC307/20 CAS No. 12045-63-5 Purity 99.9% APS 3µm, 500µm (Customizable) Molecular Formula TiB2 Appearance Powder Color Gray Powder Density 4.52 g/mL Melting Point 2980 °C Titanium Boride Micro Powder Description:
Titanium Boride Micro is electrical conductivity composite materials–Electrical conduction boron nitride named evaporation boat made by titanium diboride and boron nitride is the primary member for vacuum aluminizing equipment; Ceramic cutting tools and their components–Titanium diboride ceramic is used for metal wortles, extrusion dies, sandblasting nozzles, potted components and cutting tools; Composite ceramic materials–It could be used as multi-element composite materials’ important constituent element.
It can be made up of cutting tools’ composite materials with TIC, TIN, or SIC. And it is as a component to make armor protection materials.
It is the best materials for thermostability components and function devices; Aluminium electrolysis’ cathode materials–Because of the good wet ability of TIB2 and metal aluminum liquid.
It makes the electrolytic aluminum’s power consumption low, then the electrolytic bath’s life will belong.
It may also make up PIC exothermic materials and flexibility PIC materials, and it is the intensify reagent of the metal materials such as Al, Fe, and Cu. Products Performance:
It is a new ceramic material. And it has excellent physical and chemical performance. Such as a high melting point ( 2980 °C), high hardness ( 34 GPa), and its density is 4.52 g/cm3.
It could stand wear and tear, also resist acid-alkali. Its electric performance is good (P=14.4μΩ.cm), heat-conducting property is strong (25J/m.s.k).
And it has excellent chemical stability and thermal shock resistant performance.
Titanium diboride and its composite materials are innovative and high technology materials that were widely concerned and putative that have promotional value and application prospects.
Titanium Boride Micro Related Information:
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Tantalum Niobium Carbide Powder
Product Tantalum Niobium Carbide Powder
CAS No. 12070-06-3 Appearance Gray Powder Purity 99.9% APS 100 mm (Can be customized) Ingredient TaC:NbC Product Code NCZ-NSC327/20 Tantalum Niobium Carbide Powder Description :
Tantalum Niobium Carbide Powder is a chemical element with the symbol Ta and atomic number. Previously known as tantalum, it is named after Tantalus, a villain from Greek mythology.
Tantalum is a rare, hard, blue-gray, lustrous transition metal that is highly corrosion-resistant. It is part of the refractory metals group, which are widely used as minor components in alloys. The chemical inertness of tantalum makes it a valuable substance for laboratory equipment, and as a substitute for platinum.
Its main use today is in tantalum capacitors in electronic equipment such as mobile phones, DVD players, video game systems, and computers. Tantalum, always together with the chemically similar niobium, occurs in the mineral groups tantalite, columbite, and coltan (a mix of columbite and tantalite, though not recognized as a separate mineral species.
Tantalum is considered a technology-critical element. Tantalum is dark dense, ductile, very hard, easily fabricated, and highly conductive of heat and electricity. The metal is renowned for its resistance to corrosion by acids; in fact, at temperatures below 150 °C tantalum is almost completely immune to attack by the normally aggressive aqua regia.
It can be dissolved with hydrofluoric acid or acidic solutions containing the fluoride ion and sulfur trioxide, as well as with a solution of potassium hydroxide.
Tantalum’s high melting point of 3017 °C (boiling point 5458 °C) is exceeded among the elements only by tungsten, rhenium, and osmium for metals, and carbon. Tantalum exists in two crystalline phases, alpha, and beta.
Tantalum Niobium Carbide Related Information:
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Silver Micro Powder
Product Silver Micro Powder
CAS No. 7440-22-4 Appearance Gray Powder Purity 99.9% APS 3µm, 5µm, 8µm (Can be customized) Ingredient Ag Product Code NCZ-NSC328/20 Melting Point 960.8 oC (nanosilver below this point) Boiling Point 2212 °C Density 10.5 g/cm3 Silver Micro Description:
Silver Micro Powder can be used as a pharmaceutical antibacterial, disinfectant; some countries use Ag Nanoparticles for anti-AIDS drugs, mixed with zinc oxide powder for disinfection; Ag Nanoparticles used as a chemical catalyst. Also, Silver Micro Powder used as Antivirus antibacterial material: adding 0.1% silver nanoparticles, the inorganic antibacterial powder, can play an important role in the suppression and killing of dozens of pathogenic micro-organisms such as Escherichia coli, Staphylococcus aureus. Silver nanoparticles as a new anti-infective product that has broad-spectrum, non-resistance, free from the pH effects, antibacterial, durable, non-oxidized black, and many other properties, Silver Micro Powder can be widely used in medical, household fabrics and health care supplies.
Adding Nano Ag powder as antibacterial, anti-corrosion coating paint materials can also be used successfully in the construction and the preservation of relics. Manufacturers produce household items that utilize the antibacterial properties of silver nanoparticles.
These products include nano-silver lined refrigerators, air conditioners, and washing machines. Silver Micro Powder for Other current applications: Toys, Baby pacifiers, Clothing, Food storage containers, Face masks, HEPA filters, Laundry detergent. Conductive slurry.
Silver Micro Powder is widely used for wiring, encapsulation, and connection in the microelectronic industry.
Silver Silver Micro an important role in the minimization of electronic devices and circuits. Efficacious catalyst silver nanoparticles can Greatly enhance the chemical reaction speed and efficiency, such as Ethylene oxidation. Biological pharmacy the silver nanopowder can be used in cell death and the gene diagnosis.
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Silicon Carbide Micro Powder
Product Silicon Carbide Micro Powder
Catalog No. NCZ-NSC305/20 CAS No. 409-21-2 Purity 99.9% APS 2µm, 5µm, 10µm, 20µm, 40µm, 800µm (Customizable) Molecular Formula SiC Molecular weight 40.11 g/mol Appearance Powder Color Light Gray Powder Density 3.21 g/cm³ Melting Point 2,730 °C Silicon Carbide Micro Description
Silicon carbide Micro Powder crystallizes in a close-packed structure covalently bonded to each other. The atoms are arranged so that two primary coordination tetrahedral where four carbon and four silicon atoms are bonded to a central Si and C atoms are formed. Silicon carbide (SiC), also known as a semiconductor containing silicon and carbon.
It occurs in nature as the extremely rare mineral moissanite. Grains of silicon carbide can be bonded together by sintering to form very hard ceramics that are widely used in applications requiring high endurance, such as car brakes, car clutches, and ceramic plates in bulletproof vests.
Electronic applications of silicon carbide such as light-emitting diodes (LEDs) and detectors in early radios Large single crystals of silicon carbide can be grown by the Lely method and they can be cut into gems known as synthetic moissanite.
he material formed in the Acheson furnace varies in purity, according to its distance from the graphite resistor heat source. Colorless, pale yellow, and green crystals have the highest purity and are found closest to the resistor. The color changes to blue and black at a greater distance from the resistor and these darker crystals are less pure. Nitrogen and aluminum are common impurities, and they affect the electrical conductivity of SiC
Silicon Carbide Micro Related Information
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Molybdenum Disulfide Powder
Product Name Molybdenum Disulfide Powder
Catalog No. NCZ-NSC303/20 CAS No. 1317-33-5 Purity 99.9% APS 200 to 300 nm, 500 nm-800 nm, 1 – 5 µm (Customizable) Molecular Formula MoS2 Molecular weight 160.07 g/mol Appearance Powder Color Black Powder Density 5.06 g/cm³ Melting Point 1185 ° C (2165 ° F) Description of Molybdenum Disulfide Powder
Molybdenum disulfide (or moly) is an inorganic compound composed of molybdenum and sulfur. Its chemical formula is mos. The compound is classified as a transition metal dichalcogenide. It is a silvery black solid that occurs as the mineral molybdenite, the principal ore for molybdenum. is relatively unreactive. It is unaffected by dilute acids and oxygen. In appearance and feel, molybdenum disulfide is similar to graphite.
It is widely used as a dry lubricant because of its low friction and robustness. Bulk mos. is a diamagnetic, indirect bandgap semiconductor similar to silicon, with a bandgap MoS2 is naturally found as either molybdenite, a crystalline mineral, or jordanite, a rare low-temperature form of molybdenite. Molybdenite ore is processed by flotation to give relatively pure Mos. the main contaminant is carbon. MOs also arises by thermal treatment of virtually all molybdenum compounds with hydrogen sulfide or elemental sulfur and can be produced by metathesis reactions from molybdenum pentachloride.
MoS2 excels as a lubricating material (see below) due to its layered structure and low coefficient of friction. Interlayer sliding dissipates energy when shear stress is applied to the material. Extensive work has been performed to characterize the coefficient of friction and shear strength of MoS2 in various atmospheres.
The shear strength of MoS2 increases as the coefficient of friction increases. This property is called superlubricity. At ambient conditions, the coefficient of friction for MoS2 was determined to be 0.150, with a corresponding estimated shear strength of 56.0 MPa. Direct methods of measuring the shear strength indicate that the value is closer to the wear resistance of MoS2 in lubricating applications can be increased by doping MoS2 with chromium.
Flakes thinner than 5 layers undergo homogenous bending and rippling, while flakes around 10 layers are thickly delaminated through interlayer sliding. Flakes with more than 20 layers exhibited a kinking mechanism during micromechanical cleavage. The cleavage of these flakes was also determined to be reversible due to the nature of van der Waals bonding.
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Copper Monosulfide Powder
Product Name Copper Monosulfide Powder
Stock No NCZ-NSC302/20 CAS No 1317-40-4 Purity 99.9% APS 15µm (Can be customized) Molecular Formula CuS Form Powder Color Black Powder Molar Mass 95.611 g/mol Density 4.76 g/cm3 Copper Monosulfide Powder Description:
Copper monosulfide Powder is a chemical compound of copper and sulfur. It occurs in nature as the dark indigo blue mineral covellite.
It is a moderate conductor of electricity. A black colloidal precipitate of CuS is formed when hydrogen sulfide, H2S, is bubbled through solutions of Cu salts.
It is one of several binary compounds of copper and sulfur see copper sulfide for an overview of this subject and has attracted interest because of its potential uses in catalysis and photovoltaics Copper sulfide crystallizes in the hexagonal crystal system, and this is the form of the mineral covellite.
There is also an amorphous high-pressure form which based on the Raman spectrum has been described as having a distorted covellite structure. An amorphous room temperature semiconducting form produced by the reaction of an ethylenediamine complex with thiourea has been reported, which transforms into the crystalline covellite form at 30 °C.
The crystal structure of covellite has been reported several times, and whilst these studies are in general agreement on assigning the space group P63/mmc there are small discrepancies in bond lengths and angles between them.
The structure was described as “extraordinary” by Wells and is quite different from copper oxide, but similar to CuSe (klockmannite). The covellite unit cell contains 6 formula units 12 atoms.
Copper Monosulfide Related Information:
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Carbon Aluminum Nitride Powder
Product Name Carbon Aluminum Nitride Powder
Stock No NCZ-NSC300/20 CAS No 24304-00-5 Purity 99.9% APS 1-3µm (Can be customized) Molecular Formula AlN Form Powder Color White Powder Melting Point 2200 °C Molar mass 40.9882 Carbon Aluminum Nitride Powder Description:
Aluminum Nitride Powder is a solid nitride of aluminum. It has a high thermal conductivity of up to 285 W/(m·K) and is an electrical insulator.
Its wurtzite phase (w-AlN) has a bandgap of ~6 eV at room temperature and has a potential application in optoelectronics operating at deep ultraviolet frequencies.
Epitaxially grown thin-film crystalline aluminum nitride is used for surface acoustic wave sensors (SAWs) deposited on silicon wafers because of AlN’s piezoelectric properties.
One application is an RF filter that is widely used in mobile phones, which is called a thin film bulk acoustic resonator (FBAR).
This is a MEMS device that uses aluminum nitride sandwiched between two metal layers. AlN is also used to build piezoelectric micromachined ultrasound transducers, which emit and receive an ultrasound, and which can be used for in-air range finding over distances of up to a meter. Metallization methods are available to allow AlN to be used in electronics applications similar to those of alumina and beryllium oxide.
AlN nanotubes as inorganic quasi-one-dimensional nanotubes, which are isoelectronic with carbon nanotubes, have been suggested as chemical sensors for toxic gases.
Currently, there is much research into developing light-emitting diodes to operate in the ultraviolet using gallium nitride-based semiconductors and, using the alloy aluminum gallium nitride, wavelengths as short as 250 nm have been achieved.
In 2006, an inefficient AlN LED emission at 210 nm was reported.
Carbon Aluminum Nitride Powder Related Information:
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Calcium Boride Powder
Product Name Calcium Boride Powder
Stock No NCZ-NSC301/20 CAS No 12007-99-7 Purity 99.9% APS 45µm (Can be customized) Molecular Formula CaB6 Form Powder Color Black Powder Melting Point 2235 °C Molar mass 104.944 Calcium Boride Powder Description:
Calcium hexaboride (sometimes calcium boride) is a compound of calcium and boron with the chemical formula CaB6.
It is an important material due to its high electrical conductivity, hardness, chemical stability, and melting point.
It is a black, lustrous, chemically inert powder with a low density.
It has the cubic structure typical for metal hexaborides, with octahedral units of 6 boron atoms which are a remarkable fact because calcium and boron are neither magnetic nor have inner 3d or 4f electronic shells, which are usually required for ferromagnetism.
It has been investigated in the past due to a variety of peculiar physical properties, such as superconductivity, valence fluctuation, and Kondo effects.
However, the most remarkable property of CaB is its ferromagnetism. It occurs at unexpectedly high temperatures and with a low magnetic moment.
The origin of this high-temperature ferromagnetism is the ferromagnetic phase of the dilute electron gas, linkage to the presumed excitonic state in calcium boride, or external impurities on the surface of the sample.
The impurities might include iron and nickel, probably coming from impurities in the boron used to prepare the sample.
CaB6 is insoluble in H2O, MeOH (methanol), and EtOH (ethanol) and dissolves slowly in acids.
Its microhardness is 27 GPa, Knoop hardness is 2600 kg/mm2), the Young modulus is 379 GPa, and electrical resistivity is greater than 2·1010 Ω·m for pure crystals.
CaB6 is a semiconductor with an energy gap estimated at 1.0 eV. The low, semi-metallic conductivity of many CaB6 samples can be explained by unintentional doping due to impurities and possible non-stoichiometry
Calcium Boride Related Information:
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Single Crystal Silicon N Type
Product Name: Single Crystal Silicon N Type
Product Name Single Crystal Silicon N Type Cat No. NZC-NSC330/20 MF Si/SiO2 Día 100 mm (4 inches) Type/Dopant N Orientation <100> Wafer thickness 500 micrometer Resistivity <0.01 Polished Front Side Polished Etched Back Side Etched SiO2 Oxide Thickness 300 nm (dry) Provided in single wafer box
Single Crystal Silicon N Type
It is clear that silicon, which has been the dominant material in the semiconductor industry for some time, will carry us into the coming ultra-large-scale integration (ULSI) and system-on-a-chip (SOC) eras, even though silicon is not the optimum choice for every electronic device. Semiconductor devices and circuits are fabricated through many mechanical, chemical, physical, and thermal processes. The preparation of silicon single-crystal substrates with mechanically and chemically polished surfaces is the first step in the long and complex device fabrication process. In this chapter, the approaches currently used to prepare silicon materials (from raw materials to single-crystalline silicon) are discussed.
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Crystal Silicon dioxide Wafer N-type (4 inches) RELATED INFORMATION
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Single Crystal Silicon Dioxide Wafer P-Type
Product Name: Single Crystal Silicon Dioxide Wafer P-Type
Product Name Single Crystal Silicon Dioxide Wafer P-Type Cat. No. NCZ-NSC 319/20 Diameter 100 mm +-0.2 mm (4″)
Oxide Thickness 300 ±20 nm (dry) Color Violet Thickness 500 ± 20 micron Resistivity
1-10 ohm-cm
Type/Dopant P Orientation <100> Single Crystal Silicon Dioxide Wafer P-Type (4 inches) Description
Single Crystal Silicon Dioxide Wafer P-Type Nanochemazone® produces Silicon Oxide Wafer with the highest possible density. Our standard wafer size is nominally 25.4 mm (1 inch) to 300 mm (11.8 inches). Materials are produced using crystallization, solid-state, and other ultra-high purification processes such as sublimation.
This process forms a cylindrical ingot which is then sliced and polished to form wafers. Nanochemazone® High Purity (99.999%) Silicon Oxide Wafers- Polished & Unpolished specializes in producing custom compositions for commercial and research applications and new proprietary technologies.
Nanochemazone® also casts any of the rare earth metals and most other advanced materials into rod, bar or plate form, as well as other machined shapes and through other processes such as nanoparticles and in the form of solutions and organometallics. We also produce Silicon as rod, pellets, powder, pieces, disc, ingot, wire, and in compound forms, such as oxide. Other shapes are available by request.
Single Crystal Silicon Dioxide Wafer P-Type (4 inches) RELATED INFORMATION
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Single Crystal silicon-silicon dioxide Wafer N-type (4 inches)
Product Name: Single Crystal silicon-silicon dioxide Wafer N-type (4 inches)
Cat. No. NCZ-NSC 326/20 Diameter 100 mm (4″) Product Name Silicon Oxide Wafer Oxide Thickness 100 nm (dry) Color Violet Wafer thickness 525 microns Resistivity 0.001-0.005ohm-cm Type/Dopant N Orientation <100> Single Crystal silicon-silicon dioxide Wafer N-type (4 inches) Description
The majority of silicon solar cells are fabricated from Crystal Silicon-silicon dioxide Wafer n-type, which may be either single-crystalline or multi-crystalline. Single-crystalline wafers typically have better material parameters but are also more expensive.
Crystalline silicon has an ordered crystal structure, with each atom ideally lying in a pre-determined position. Crystalline silicon exhibits predictable and uniform behavior but because of the careful and slow manufacturing processes required,
It is also the most expensive type of silicon. In electronics, a wafer (also called a slice or substrate) is a thin slice of semiconductor, such as crystalline silicon (c-Si), used for the fabrication of integrated circuits and, in photovoltaics, to manufacture solar cells.
The wafer serves as the substrate for microelectronic devices built in and upon the wafer. It undergoes many microfabrication processes, such as doping, ion implantation, etching, thin-film deposition of various materials, and photolithographic patterning.
Finally, the individual microcircuits are separated by wafer dicing and packaged as an integrated circuit.
Single Crystal silicon-silicon dioxide Wafer N-type (4 inches) Related information
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Indium Tin Oxide Coated Glass (ITO)
Product Name Indium Tin Oxide Coated Glass (ITO)
CAS No. 50926-11-9 Cat.No. NCZ-NSC 325/20 MF In2O3 · (SnO2)x Resistance 15+2.5ohm Size 25x25mm Thickness 0.55mm Transmittance around 80% Indium tin oxide (ITO) Description
Indium tin oxide (ITO) is a ternary composition of indium, tin, and oxygen in varying proportions. Depending on the oxygen content, Indium tin oxide can either be described as a ceramic or alloy.
Indium tin oxide is typically encountered as an oxygen-saturated composition with a formulation of 74% In, 18% O2, and 8% Sn by weight. Oxygen-saturated compositions are so typical, that unsaturated composition is termed oxygen-deficient ITO.
Indium tin oxide ITO transparent and colorless in thin layers, while in the bulk form it is yellowish to grey. In the infrared region of the spectrum, it acts as a metal-like mirror.
Indium tin oxide is one of the most widely used transparent conducting oxides because of its electrical conductivity and optical transparency, as well as the ease with which it can be deposited as a thin film.
As with all transparent conducting films, a compromise must be made between conductivity and transparency, since increasing the thickness and increasing the concentration of charge carriers increases the material’s conductivity, but decreases its transparency.
Indium tin oxide (ITO) Related Information
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FTO Coated Glass
Product : FTO Coated Glass
Cat. No. NCZ-NSC 324/20 Resistance 15+2.5ohm Purity 99.9% Size 25*25mm Ingredient F/SnO2 Thickness 3.2mm Length 150 mm Transmittance around 80% Width 100 mm FTO Coated Glass Description
FTO (Fluorine-doped Tin Oxide) glass is a transparent conductive metal oxide that can be used in the fabrication of transparent electrodes for thin film photovoltaics, such as organic photovoltaic, amorphous silicon, cadmium telluride, dye-sensitized solar cells, and hybrid perovskites. FTO glass also has a varied range of other applications, including touch screen displays, electromagnetic interference/radio frequency interference shielding, heated glass, anti-static coatings, and light-emitting diodes. There are several properties of FTO glass that make it suitable for the fabrication of a wide range of optoelectronic devices: these include low surface resistivity, high optical transmittance, scratch and abrasion resistant, thermally stable up to high temperatures, and inert to a wide range of chemicals.
FTO Coated Glass Related Information
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Spherical Aluminum Powder
Product Spherical Aluminum Powder
CAS No. 7269-90-5 Appearance Grey Powder Purity 99.9% APS 1 – 5 Microns (Can be customized) Ingredient Al Product Code NCZ-NSC-201/20 Spherical Aluminum Powder Description :
1.Preservative materials (corrosion resistant coating boat, yacht, and building materials) and (electronic materials, ACC, high-grade decorative materials).
2 Good reducibility (hot welding, reduction of steelmaking) fire prevention, refractory steel making, deoxidization, catalyst, friction materials, and foundry casting.
3. Spherical Aluminum used in high grade metal paint, composite materials (thermal spraying composite metal powder, ceramic composite pipe).
Micron aluminum powders also apply to the military, aerospace, chemical industry (Catalyst, pesticids).
Spherical Aluminum Related Information
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Note: We supply different size ranges of Nano and micron as per the client’s requirements and also accept customization in various parameters.
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Copper Nickel Micron Powder
Product Copper Nickel Micron Powder
CAS No. 12357-13-0 Appearance Black Powder Purity 99.9% APS 1 – 5 Microns (Can be customized) Ingredient Cu-Ni Product Code NCZ-NSC-193/20 Copper Nickel Micron Powder Description:
- powder metallurgy for copper-based or nickel-based alloy
- the surface coating of maritime vessels seawater corrosion resistant materials
- lubricant wear-resistant, anti-wear additives
- conductive, thermally conductive filler material
Copper Nickel Micron Powder is generally immediately available in most volumes. High purity, submicron and nanopowder forms may be considered. Nanochemazone produces to many standard grades when applicable, including Mil Spec (military grade); ACS, Reagent and Technical Grade; Food, Agricultural and Pharmaceutical Grade; Optical Grade, USP and EP/BP (European Pharmacopoeia/British Pharmacopoeia) and follows applicable ASTM testing standards. Typical and custom packaging is available, as is additional technical and safety (MSDS) data. Please contact us for information on lead time and pricing above.
Copper Nickel Micron Related Information
Storage Conditions:
Airtight sealed, avoid light and keep dry at room temperature.
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Note: We supply different size ranges of Nano and micron as per the client’s requirements and also accept customization in various parameters.
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Yttrium Sulfide Powder
Product Yttrium Sulfide Powder
CAS No. 12039-19-9 Appearance Yellow Powder Purity 99.9% APS 1 – 5 Microns (Can be customized) Ingredient Y2S3 Product Code NCZ-NSC-294/20 Yttrium Sulfide Powder Description
Yttrium Sulfide Powder is generally immediately available in most volumes. High purity, submicron and nanopowder forms may be considered. Nanochemazone produces to many standard grades when applicable, including Mil Spec (military grade); ACS, Reagent and Technical Grade; Food, Agricultural and Pharmaceutical Grade; Optical Grade, USP and EP/BP (European Pharmacopoeia/British Pharmacopoeia) and follows applicable ASTM testing standards. Typical and custom packaging is available, as is additional technical and safety (MSDS) data. Please contact us for information on lead time and pricing above.
Yttrium Sulfide Related Information
Storage Conditions:
Airtight sealed, avoid light and keep dry at room temperature.
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Yttrium Sulfate Octahydrate Powder
Product Yttrium Sulfate Octahydrate Powder
CAS No. 7446-33-5 Appearance White Powder Purity 99.9% APS 1 – 5 Microns (Can be customized) Ingredient Y2(SO4)3•8H2O Product Code NCZ-NSC-300/20 Yttrium Sulfate Octahydrate Powder Description :
Yttrium Sulfate Octahydrate is used as a laboratory reagent, colorant, structural ceramics, optical glasses and catalysts. It finds application in electrical components and photo-optical materials.
Yttrium Sulfate Octahydrate Related Information:
Storage Conditions:
Airtight sealed, avoid light and keep dry at room temperature.
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Yttrium Nitrate Hexahydrate Powder
Product Yttrium Nitrate Hexahydrate Powder
CAS No. 13494-98-9 Appearance white Powder Purity 99.9% APS 1 – 5 Microns (Can be customized) Ingredient Y(NO3)3•6H2O Product Code NCZ-NSC-298/20 Yttrium Nitrate Hexahydrate Powder Description :
Yttrium Nitrate hexahydrate is used as a reagent, in optics, ceramics, glass, and electronics. It is used in superconducting materials. It has been reported as a reusable catalyst in the Bignelli reaction for the synthesis of heterocycles such as pyrimidine-2-ones. Yttrium Nitrate hexahydrate a powerful catalyst for the synthesis of some supramolecules such as Calix resorcinarenes, dioxooctahydroxanthenes, 2-amino-4H-chromenes, and several other organic condensation products.
Yttrium Nitrate Hexahydrate Related Information
Storage Conditions:
Airtight sealed, avoid light and keep dry at room temperature.
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Yttrium Fluoride Powder
Product Yttrium Fluoride Powder
CAS No. 13709-49-4 Appearance white Powder Purity 99.9% APS 1 – 5 Microns (Can be customized) Ingredient YF3 Product Code NCZ-NSC-296/20 Yttrium Fluoride Description
Yttrium Fluoride of yttrium are yttrium oxide and yttrium hydroxide, respectively, and they are both white solids which are hardly soluble in water. Among them, yttrium oxide can be prepared by heating yttrium carbonate or yttrium oxalate. Alternatively, the oxychloride can be heated in air to yield the oxide.
Yttrium Fluoride can be precipitated by the reaction of soluble yttrium compounds with sodium hydroxide or ammonia, and can also be obtained by the hydrolysis of yttrium alkoxide. Hydroxy acids and sugars present in the solution will prevent the formation of precipitates due to the formation of stable coordination compounds.
Yttrium Fluoride can be decomposed by heating. Firstly, basic yttrium oxide is formed, and when heating is continued yttrium oxide is obtained. Both yttrium oxide and Yttrium Fluoride are easily soluble in strong acids to form corresponding yttrium salts.
Yttrium Fluoride Powder Related Information
Storage Conditions:
Airtight sealed, avoid light and keep dry at room temperature.
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Yttrium Aluminate Powder
Product Yttrium Aluminate Powder
CAS No. 12005-21-9 Appearance solid Purity 99.9% APS 1 – 5 Microns (Can be customized) Ingredient Y3Al5O12 Product Code NCZ-NSC-299/20 Yttrium Aluminate Powder Description:
Yttrium Aluminate Powder sputtering target to prepare bubble memory devices. Yttrium Aluminate Powder finds application in ceramic, glass optics due to its thermal stability and insolubility. It is used in the preparation of sputtering bonded targets in chemical processes viz. chemical vapor deposition, atomic thermal and electron beam evaporation. Yttrium Aluminate Powder is also used in solar, water treatment, and fuel cells. Further, it is used as a coloring and adhesive agent in enamel manufacture. Nanochemazone produces to many standard grades when applicable, including Mil Spec (military grade); ACS, Reagent and Technical Grade; Food, Agricultural and Pharmaceutical Grade; Optical Grade, USP and EP/BP (European Pharmacopoeia/British Pharmacopoeia) and follows applicable ASTM testing standards. Typical and custom packaging is available, as is additional technical and safety (MSDS) data. Please contact us for information on lead time and pricing above.
Yttrium Aluminate Related Information
Storage Conditions:
Airtight sealed, avoid light and keep dry at room temperature.
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Yttrium Acetate Aetrahydrate Powder
Product Yttrium acetate Aetrahydrate Powder
CAS No. 85949-60-6 Appearance White Powder Purity 99.9% APS 1 – 5 Microns (Can be customized) Ingredient Y(OOCCH3)3•4H2O Product Code NCZ-NSC-302/20 Yttrium Acetate Aetrahydrate Description:
Yttrium acetate Aetrahydrate conjugate base or ion (specifically, the negatively charged ion called an anion) typically found in aqueous solution and written with the chemical formula C.The neutral molecules formed by the combination of the acetate ion and a positive ion (called a cation) are also commonly called “acetates” (hence, acetate of lead, acetate of aluminum, etc.).
The simplest of these is hydrogen acetate (called acetic acid) with corresponding salts, esters, and the polyatomic anion. Most of the approximately billion kilograms of acetic acid produced annually in the industry are used in the production of acetates, which usually take the form of polymers.
In nature, acetate is the most common building block for biosynthesis. For example, the fatty acids are produced by connecting the two carbon atoms from acetate to a growing fatty acid.
Yttrium Acetate Aetrahydrate Related Information
Storage Conditions:
Airtight sealed, avoid light and keep dry at room temperature.
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Note: We supply different size ranges of Nano and micron as per the client’s requirements and also accept customization in various parameters.
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