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1 Products availableWe are leaders in the market for providing best range of Barium Nitride Micro Powder, Strontium Titanate NanoPowder, Nickel Zinc Iron Oxide Nanopowder, Barium Carbonate Nanopowder and Chromium Nitride Micro Powder
Tunable microwave capacitors for communication; Phosphor for field-emission display in flat panel displays; PTC thermistors; Microwave solitons; Varistors; Nonvolatile memory; Electrical insulation; Capacitor dielectric of Gbit-scale DRAMs. Giant piezoelectric effect at cryogenic temperatures; Magnetic field insensitive thermometer; High-voltage capacitors; Ultralow-temperature scanning microscopies; Micro-capacitors; High density dynamic random access memories; Decoupling capacitors; Oxygen sensors; Photocatalyst; Planar capacitors; Semiconductive ceramics; Pyroelectric far-infrared dectors; Soft-phonon devices; Stochastic resonance; Trunable resonant circuits; Varactors.
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The High-purity products are prepared by using analytically pure chemical reagent as raw materials, and washed by distilled water. Its purity is higher than 99.5%. All our high-purity products are produced by our well-known research universities and national laboratories, not produced by ordinary manufactories. Ordinary products are prepared by using fine chemical raw materials, purity is up to 98-99%.
The following are the chief applications of nickel zinc iron oxide nanoparticles:
Preparation of nickel cermet which is used as the anode layer of solid oxide fuel cells (SOFC) In lithium ion micro batteries as lithium nickel zinc iron cathode In plastics, textiles, electro chromic coatings In nanofiber, nanowire, alloys and catalyst applications.
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Barium carbonate is a white solid precipitated from a solution of barium hydroxide and urea. The chemical formula for barium carbonate is BaCO3. It also occurs in mineral known as witherite and also prepared from barytes through precipitation. It is toxic in nature. It is also common in turquoise glazes. It is mainly used to remove sulfate impurities from feedstock of the chlor-alkali process. Otherwise it is a common precursor to barium-containing compounds such as ferrites.
CrN is used as a coating material for corrosion resistance and in metal forming and plastic moulding applications. CrN is often used on medical implants and tools. CrN is also a valuable component in advanced multicomponent coating systems, such as CrAlN, for hard, wear-resistant applications on cutting tools. Chromium nitride is a chemical compound of chromium and nitrogen with the formula CrN. It is very hard, and is extremely resistant to corrosion. It is an interstitial compound, with nitrogen atoms occupying the octahedral holes in the chromium lattice as such, it is not strictly a chromium compound nor does it contain nitride. Chromium Nitride is generally immediately available in most volumes. High purity, submicron and nanopowder forms may be considered.
ATO can shield heat when it is used in hot mirror, building or glass curtain wall. ATO can be used in the glass of car, train and plane to protection against fog and frost.Due to the decline of the microwave, ATO can be used in computer room and radar shielding and protecting area where needs to shield electromagnetic wave.The product of Antimony Tin Oxide Nanopowder ATO has the excellent quality of electricity and optics. Due to its good conductivity, Antimony Tin Oxide Nanopowder can be widely used in the industry of coating, chemical fiber and polymeric membrane as anti-static material. Antimony Tin Oxide Nanopowder has more advantaged properties in dispersion, weather-ability, thermoplastic, wear resistance, and security than some other conductive materials such as graphite, surfactant, and metallic powder etc. The nanopowder of Antimony Tin Oxide ATO can also be used in the field of optoelectronic display devices, transparent electrode, solar battery, liquid crystal display, catalysis and other industries with its advantages. Chemical resistance: acid resistance, alkali resistance, lightfastness, organic solvents resistance, antioxidant and inflaming retarding.
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The High-purity products are prepared by using analytically pure chemical reagent as raw materials, and washed by distilled water. Its purity is higher than 99.5%. All our high-purity products are produced by our well-known research universities and national laboratories, not produced by ordinary manufactories. Ordinary products are prepared by using fine chemical raw materials.
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Researchers are exploring ways to use nanoparticles in multiple applications across various fields such as biology, physics, chemistry, pharmaceutical drug manufacture, polymer science, toxicology, cosmetics, optical components, and mechanical engineering. This article discusses the properties and applications of manganese iron oxide nanoparticles. Manganese is a Block D, Period 4 element, iron is a Block D, Period 4 element, and oxygen is a Block P, Period 2 element. Manganese is found in braunite, psilomelane, pyrolusite, and rhodochrosite, while iron is found in the minerals hematite and magnetite.
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Product Name : Inconel 600 Alloy Micro Powder
Pack Size : 10 Grams , 50 Grams , 100 Gram, 500 Gram ,
Cas No: | N/A |
Appearance | Powder |
Purity | 99.9% |
APS | 1-5 m/ 60-70nm (Can be Customized) |
Formula | Ni-72% Cr-14-17% Fe-6-10% |
Product Code | SCM-AL-106/22 |
Molar Mass | N/A |
Density | 8.47 g/cm3 |
Usage/Application | Scientific Research |
Product Description
Inconel (Nickel-Chromium-Iron) Alloy 600 is a highly corrosion and heat resistant alloy with excellent mechanical properties ideal for use in high temperature applications such as heat-treating, aerospace, electronics components, and nuclear reactors. It 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 and follows applicable ASTM testing standards. Typical and custom packaging is available, as is additional research, technical and safety (MSDS) data.
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Product Name : Inconel 625 Alloy Micro Powder
Pack Size : 10 Grams , 50 Grams , 100 Gram, 500 Gram ,
Cas No: | N/A |
Appearance | Powder |
Purity | 99.9% |
APS | 1-5 m/ 60-70nm (Can be Customized) |
Formula | Ni Cr Fe Mo Nb |
Product Code | SCM-AL-107/22 |
Melting Point | 1290-1350 C |
Density | 8.44 g/cm3 |
Usage/Application | Scientific Research |
Product Description
Inconel Nickel-Chromium Alloy 625 is a highly corrosion and heat resistant alloy with excellent mechanical properties ideal for use in high temperature applications such as heat-treating, chemical processing, and nuclear reactor components. The addition of molybdenum and niobium increases the strength and corrosion resistance of the nickel-chromium base, imparting a stiffening effect that eliminates the need for precipitation-hardening treatments.
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Note : We supply different size ranges of Lab, R&D Materials as per requirements and send e-mail soodchemicals@gmail.com, soodsalespurchase@gmail.com Mobile No +91-8053538675, Same for what's up +91 9992538675 Same for whats up for any inqury & technical qus, Official quotation.
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Product Name : Inconel 625 Nanoparticles
Pack Size : 10 Grams , 50 Grams , 100 Gram, 500 Gram ,
Cas No: | N/A |
Appearance | Powder |
Purity | 99.9% |
APS | 1-5 m/ 60-70nm (Can be Customized) |
Formula | Ni Cr Mo Fe Nb |
Product Code | SCM-AL-108/22 |
Melting Point | 1290-1350 C |
Density | 8.44 g/cm3 |
Usage/Application | Scientific Research |
Product Description
Inconel Nickel-Chromium Alloy 625 is a highly corrosion and heat resistant alloy with excellent mechanical properties ideal for use in high temperature applications such as heat-treating, chemical processing, and nuclear reactor components. The addition of molybdenum and niobium increases the strength and corrosion resistance of the nickel-chromium base, imparting a stiffening effect that eliminates the need for precipitation-hardening treatments.
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Product Name : Inconel 693 Alloy Micro Powder
Pack Size : 10 Grams , 50 Grams , 100 Gram, 500 Gram ,
Cas No: | N/A |
Appearance | Powder |
Purity | 99.9% |
APS | 1-5 m/ 60-70nm (Can be Customized) |
Formula | Ni-Cr-Fe-Al |
Product Code | SCM-AL-110/22 |
Melting Point | 1317 - 1367 C |
Density | 7.77 g/cm3 |
Usage/Application | Scientific Research |
Product Description
Inconel 693 is a high-chromium nickel base alloy with excellent corrosion resistance and high temperature creep-rupture strength. IN-693 is used in metal dusting applications and other high-temperature industrial environments. We offer standard sizes and shapes in addition to manufacturing unique custom alloys which are tailored to customer requirements. Bulk quantities and term contracts are available for all of our alloy materials. Please contact us with your specifications to receive a quote for materials.
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Airtight sealed, avoid light, and keep dry at room temperature.
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Note : We supply different size ranges of Lab, R&D Materials as per requirements and send e-mail soodchemicals@gmail.com, soodsalespurchase@gmail.com Mobile No +91-8053538675, Same for what's up +91 9992538675 Same for whats up for any inqury & technical qus, Official quotation.
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Packaging Details : Plastic bottle cardboard box courier by dtdc
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product name : inconel 718 alloy micro powder
pack size : 10 grams , 50 grams , 100 gram, 500 gram ,
cas no: | n/a |
appearance | gray powder |
purity | 99.9% |
aps | 1-5 m/ 60-70nm (can be customized) |
formula | ni fe cr |
product code | scm-al-111/22 |
melting point | 1260-1336 c |
density | 8.19 g/cm3 |
usage/application | scientific research |
product description
inconel 718 is one of numerous metal alloys sold. ultra high purity and high purity forms also include metal powder, submicron powder and nanoscale, targets for thin film deposition, and pellets for chemical vapor deposition (cvd) and physical vapor deposition (pvd) applications. it 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 and follows applicable astm testing standards. typical and custom packaging is available. primary applications include bearing assembly, ballast, casting, step soldering, and radiation shielding.
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Product Name : Inconel 825 Alloy Micro Powder
Pack Size : 10 Grams , 50 Grams , 100 Gram, 500 Gram ,
Cas No: | N/A |
Appearance | Gray Powder |
Purity | 99.9% |
APS | 1-5 m/ 60-70nm (Can be Customized) |
Formula | Ni Cr Mo Fe |
Product Code | SCM-AL-112/22 |
Melting Point | N/A |
Density | 8.19 g/cm3 |
Usage/Application | Scientific Research |
Product Description
Inconel 825 is one of numerous metal alloys sold. Ultra high purity and high purity forms also include metal powder, submicron powder and nanoscale, targets for thin film deposition, and pellets for chemical vapor deposition (CVD) and physical vapor deposition (PVD) applications. It 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 and follows applicable ASTM testing standards. Typical and custom packaging is available. Primary applications include bearing assembly, ballast, casting, step soldering, and radiation shielding.
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Airtight sealed, avoid light, and keep dry at room temperature.
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Product Name : Inconel 925 Alloy Micro Powder
Pack Size : 10 Grams , 50 Grams , 100 Gram, 500 Gram ,
Cas No: | N/A |
Appearance | Gray Powder |
Purity | 99.9% |
APS | 1-5 m/ 60-70nm (Can be Customized) |
Formula | Ni Cr Mo Fe Ti |
Product Code | SCM-AL-113/22 |
Melting Point | N/A |
Density | 8.19 g/cm3 |
Usage/Application | Scientific Research |
Product Description
Inconel 925 is one of numerous metal alloys sold. Ultra high purity and high purity forms also include metal powder, submicron powder and nanoscale, targets for thin film deposition, and pellets for chemical vapor deposition (CVD) and physical vapor deposition (PVD) applications. It 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 and follows applicable ASTM testing standards. Typical and custom packaging is available. Primary applications include bearing assembly, ballast, casting, step soldering, and radiation shielding.
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Airtight sealed, avoid light, and keep dry at room temperature.
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Product Name : Magnesium Nanopowder
Sood Chemicals specializes in producing high purity Magnesium Powder with the smallest possible average grain sizes for use in preparation of pressed and bonded sputtering targets and in Chemical Vapor Deposition (CVD) and Physical Vapor Deposition (PVD) processes including Thermal and Electron Beam (E-Beam) Evaporation, Low Temperature Organic Evaporation, Atomic Layer Deposition (ALD), Metallic-Organic and Chemical Vapor Deposition (MOCVD). Nanoparticles also produce very high surface areas. Our standard powder particle sizes average in the range of - 325 mesh, - 100 mesh, 10-50 microns and submicron (< 1 micron). We can also provide many materials in the nanoscale range. We also produce Magnesium as rod, ingot, pieces, pellets, disc, granules, wire, and in compound forms, such as oxide. Other shapes are available by request.
Cas No: 7439-95-4
Appearance Gray Powder
APS 60-70nm (Can be Customized)
Purity 99%
Chemical formula Mg
Molar mass 24.31
Density 1.738 g/cm3
Melting Point : 650 C
Boiling Point : 1091 C
Solubility in H2O: N/A
Usage/Application : Scientific Research
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High-density optical data storage; Phase conjugated mirrors and lasers; Nonlinear optical devices; Pattern recognition; Micro-capacitors; Ferroelectric ceramics; PTC thermistors; On-chip programmable devices; Optical computing; Optical image processing; Piezoelectric devices; Pyroelectric sensors; Semiconductive ceramics; Varistors; Electro-optic devices; Ceramic capacitors; Dielectric amplifiers; Dynamic holography.
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Indium Tin Oxide is a solid solution of indium oxide (In2O3) and tin(IV) oxide (SnO2) with unique properties as a transparent semiconductor material. Indium tin oxide is generally immediately available in most volumes. High purity, submicron and nanopowder forms may be considered. It produces to many standard grades when applicable, including Mil Spec (military grade); ACS, Reagent and Technical Grade; Food, Agricultural and Pharmaceutical Grade; Optical Grade.
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Product Name : Magnesium Boride Micropowder
Magnesium Boride is a unique high-temperature superconducting material that is generally immediately available in most volumes. High purity, submicron and nanopowder forms may be considered. It 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 and follows applicable ASTM testing standards. We can also produce materials to custom specifications by request, in addition to custom compositions for commercial and research applications and new proprietary technologies. Typical and custom packaging is available, as is additional research, technical and safety (MSDS) data. Please contact us above for information on specifications, lead time and pricing.
Cas No: 12007-25-9
Appearance Gray Powder
APS 1-5m (Can be Customized)
Purity 99%
Chemical formula MgB2
Molar mass 45.927
Density 2.57 g/cm3
Melting Point : 830 C
Boiling Point : N/A
Solubility in H2O: N/A
Usage/Application : Scientific Research
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product name : magnesium nitride micro powder
magnesium nitride is generally immediately available in most volumes. it offers a broad range of products for hydrogen storage research, advanced fuel cells and battery applications. hydrogen can easily be generated from renewable energy sources and is the most abundant element in the universe. hydrogen is produced from various sources such as fossil fuels, water and renewables. hydrogen is nonpolluting and forms water as a harmless byproduct during use. the challenges associated with the use of hydrogen as a form of energy include developing safe, compact, reliable, and cost-effective hydrogen storage and delivery technologies. currently, hydrogen can be stored in these three forms: compressed hydrogen, liquid hydrogen and chemical storage. high purity, submicron and nanopowder forms may be considered.
cas no: 12057-71-5
appearance powder
aps 1-5 micron (can be customized)
purity 99%
chemical formula mg3n2
molar mass 100.93
density 2.71 g/cm3
melting point : n/a
boiling point : n/a
solubility in h2o: n/a
usage/application : scientific research
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Product Name : Magnesium Borohydride Micropowder
Magnesium Borohydride is generally immediately available in most volumes. Our manufactures materials to many standard grades when applicable including Mil Spec (military grade), ACS, Reagent and Technical Grades; Food, Agricultural and Pharmaceutical Grades, Optical, Semiconductor, and Electronics Grades. Most materials can be produced in high and ultra high purity forms. Standard and custom packaging is available. Additional technical, research and safety (SDS) information is available. Please request a quote above to receive pricing information based on your specifications.
Cas No: 16903-37-0
Appearance White Powder
APS 1-5m (Can be Customized)
Purity 99%
Chemical formula Mg(BH4)2
Molar mass 53.99
Density N/A
Solubility in H2O: N/A
Usage/Application : Scientific Research
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Product Name : Magnesium Hydride Micropowder
Magnesium Hydride is generally immediately available in most volumes. It offers a broad range of products for hydrogen storage research, advanced fuel cells and battery applications. Hydrogen can easily be generated from renewable energy sources and is the most abundant element in the universe. Hydrogen is produced from various sources such as fossil fuels, water and renewables. Hydrogen is nonpolluting and forms water as a harmless byproduct during use. The challenges associated with the use of hydrogen as a form of energy include developing safe, compact, reliable, and cost-effective hydrogen storage and delivery technologies. Currently, hydrogen can be stored in these three forms: Compressed Hydrogen, Liquid Hydrogen and Chemical Storage. High purity, submicron and nanopowder forms may be considered. Hydride compounds are used often used as portable sources of hydrogen gas.
Cas No: 7693-27-8
Appearance Powder
APS 1-5 Micron (Can be Customized)
Purity 99%
Chemical formula MgH2
Molar mass 26.32
Density 1.45 g/cm3
Melting Point : N/A
Boiling Point : N/A
Solubility in H2O: N/A
Usage/Application : Scientific Research
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Zinc–copper couple is an alloy of zinc and copper that is employed as a reagent in organic synthesis. The couple has been widely applied as a reagent in other reactions requiring activated zinc metal. Zinc–copper couple does not refer to a rigorously defined chemical structure or alloy composition. The couple may contain varying proportions of copper and zinc; the zinc content is typically greater than 90%, although an alloy containing similar proportions of zinc and copper is used in some cases. The couple is frequently prepared as a darkly-colored powder and is slurried in an ethereal solvent prior to being used in slight excess relative to the substrate. Activation of zinc by copper is essential to the couple’s utility, but the origin of this effect is poorly documented. It is speculated that copper enhances reactivity of zinc at the surface of the alloy.
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Copper nanoparticles with great catalytic activities can be applied to biosensors and electrochemical sensors. Redox reactions utilized in those sensors are generally irreversible and also require high overpotentials (more energy) to run. In fact, the nanoparticles have the ability to make the redox reactions reversible and to lower the overpotentials when applied to the sensors. A polyacrylamide hydrogel with copper nanoparticles inside is able to determine glucose levels in a sample added to the gel. As phenylboronic acid groups on the hydrogel polymers bind the glucose molecules, the gel becomes swollen. As a result, the copper nanoparticles move apart, changing how incident light is diffracted by the gel. As the glucose levels decrease, the color of gel changes from red to orange to yellow to green.
One of the examples is a glucose sensor. With the use of copper nanoparticles, the sensor does not require any enzyme and therefore has no need to deal with enzyme degradation and denaturation. As described in Figure 3, depending on the level of glucose, the nanoparticles in the sensor diffract the incident light at a different angle. Consequently, the resulting diffracted light gives a different color based on the level of glucose. In fact, the nanoparticles enable the sensor to be more stable at high temperatures and varying pH, and more resistant to toxic chemicals. Moreover, using nanoparticles, native amino acids can be detected. A copper nanoparticle-plated screen-printed carbon electrode functions as a stable and effective sensing system for all 20 amino acid detection.
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Cu-In-S Alloy are generally irreversible and also require high overpotentials to run. In fact, the nanoparticles have the ability to make the redox reactions reversible and to lower the overpotentials when applied to the sensors. A polyacrylamide hydrogel with copper nanoparticles inside is able to determine glucose levels in a sample added to the gel. As phenylboronic acid groups on the hydrogel polymers bind the glucose molecules, the gel becomes swollen. As a result, the copper nanoparticles move apart, changing how incident light is diffracted by the gel. As the glucose levels decrease, the color of gel changes from red to orange to yellow to green.
One of the examples is a glucose sensor. With the use of copper nanoparticles, the sensor does not require any enzyme and therefore has no need to deal with enzyme degradation and denaturation. As described, depending on the level of glucose, the nanoparticles in the sensor diffract the incident light at a different angle. Consequently, the resulting diffracted light gives a different color based on the level of glucose. In fact, the nanoparticles enable the sensor to be more stable at high temperatures and varying pH, and more resistant to toxic chemicals. Moreover, using nanoparticles, native amino acids can be detected. A copper nanoparticle-plated screen-printed carbon electrode functions as a stable and effective sensing system for all 20 amino acid detection.
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Stainless steel depends on chromium for its appearance and resistance to corrosion. Average chrome content in stainless steel is approx. 18%. It is also used to add chromium to carbon steel. FeCr from South Africa, known as "charge chrome" and produced from a Cr containing ore with a low carbon content, is most commonly used in stainless steel production. Alternatively, high carbon FeCr produced from high-grade ore found in Kazakhstan (among other places) is more commonly used in specialist applications such as engineering steels where a high Cr/Fe ratio and minimum levels of other elements (sulfur, phosphorus, titanium etc.) are important and production of finished metals takes place in small electric arc furnaces compared to large scale blast furnaces.
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Magnesium is a chemical element with the symbol Mg and atomic number 12. It is a shiny gray solid which shares many physical and chemical properties with the other five alkaline earth metals This element is produced in large, aging stars from the sequential addition of three helium nuclei to a carbon nucleus. When such stars explode as supernovas, much of the magnesium is expelled into the interstellar medium where it may recycle into new star systems.
Magnesium is the eighth most abundant element in the Earth's crust and the fourth most common element in the Earth (after iron, oxygen and silicon), making up 13% of the planet's mass and a large fraction of the planet's mantle. It is the third most abundant element dissolved in seawater, after sodium and chlorine. Magnesium occurs naturally only in combination with other elements, where it almost always has a +2 oxidation state. The free element (metal) can be produced artificially, and is highly reactive.
The free metal burns with a characteristic brilliant-white light. The metal is now obtained mainly by electrolysis of magnesium salts obtained from brine, and is used primarily as a component in aluminium-magnesium alloys, sometimes called magnalium or magnelium. Magnesium is less dense than aluminium, and the alloy of the two is prized for its combination of lightness and strength.
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Graphene Oxide is a recently developed nanomaterial in the form of graphene, a single atom-thick layer of carbon atoms, with various oxygen-containing functionalities. Single layer graphene oxide is available in flake, powder, and water dispersion forms and can also be produced as a thin film on substrates such as quartz or Si/SiO2 wafers. We can also produce materials to customer specifications by request, in addition to custom compositions for commercial and research applications and new proprietary technologies. Applications for graphene oxide include nonvolatile memory technologies, flexible and transparent thin films, transistors, sensors, and optoelectronics. Graphene oxide is available in forms such as powder, sheet, thin film, paper, and aqueous dispersion.
Product Name : Ag-Sn Alloy Nanopowder
Pack Size: 10 gram, 50gram, 100gam , 250gram, 500 gram
Product Name | Ag-Sn Alloy Nanopowder |
Cas No | 7440-22-4 / 7440-31-5 |
Appearance | Powder |
Purity | 99% |
APS | 60-70 nm (Can be Customized) |
Formula | Ag-Sn |
Product no. | SCM-NM-133/22 |
Description :-
Silver nanoparticles are nanoparticles of silver of between 1 nm and 100 nm in size. While frequently described as being 'silver' some are composed of a large percentage of silver oxide due to their large ratio of surface to bulk silver atoms. Numerous shapes of nanoparticles can be constructed depending on the application at hand. Commonly used silver nanoparticles are spherical, but diamond, octagonal, and thin sheets are also common. Their extremely large surface area permits the coordination of a vast number of ligands. The properties of silver nanoparticles applicable to human treatments are under investigation in laboratory and animal studies.Using silver nanoparticles for catalysis has been gaining attention in recent years. Although the most common applications are for medicinal or antibacterial purposes, silver nanoparticles have been demonstrated to show catalytic redox properties for dyes, benzene, carbon monoxide, and likely other compounds. This paragraph is a general description of nanoparticle properties for catalysis; it is not exclusive to silver nanoparticles. The size of a nanoparticle greatly determines the properties that it exhibits due to various quantum effects. Additionally, the chemical environment of the nanoparticle plays a large role on the catalytic properties.While tin (Sn) is not mentioned as often as copper, it is another widely used metal for industrial applications. Tin is used most in electroplating, where the metal is used to coat other base metals to provide protection from other factors such as corrosion. Electroplating can also provide a more aesthetically pleasing appearance. The tin is used as an anode in an electrolyte solution as electrical current dissolves the tin as it moves to deposit itself on the submerged product.
Another big use for tin is for solder. Solder allows for two metal parts to be connected by creating a solid joint. In the past, tin was used as an alloy with lead to create tin solder. However, more companies are looking at silver (Ag) taking the place of lead in the alloying process.Silver is a very soft and ductile metal. It is stable in high temperatures and can resist corrosion. Silver is often alloyed with copper to make sterling silver. Yet small quantities of both copper and silver can be added to tin to create tin silver. Tin silver is most often used when soldering together products for applications.
Tin silver solder is taking the place of other solders that may contain lead. Many applications cannot use solder that contains lead due to either water or food that may come in contact with the solder when traveling through processing pipes. Tin solder is considered PB-free as it is safer for the environment when being disposed unlike lead that can harm humans, plants, and animals.The majority of the alloy will consist of tin at 95% to 96.5%. The remainder of the alloy will be silver at 3.5% up to 5%. Tin solder can be used at very high temperatures due to the stability of the silver to form a highly reliable connection for applications.
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Cu-In-Ga Nano Alloy Powder
Cu-In-S Nano Alloy Powder
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