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Copper selenide powder: pioneering sustainable energy solutions and nanotechnology innovation

Copper selenide is classified as a ternary I-III-VI2 semiconductor, attracting scientists and engineers with its excellent electronic and thermoelectric properties.

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Innovative application and development of germanium dioxide powder in the fields of semiconductors and new energy

Germanium Oxide GeO2 powder, Germanium dioxide powder, is an inorganic compound. The appearance is white powder or colorless crystals, insoluble in water and hydrochloric acid.

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High purity manganese diboride (MnB2) powder shows new application potential in energy storage and conversion

Manganese diboride is a compound with the molecular formula MnB2 and molecular weight of 76.56.

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High purity vanadium hydride VH₂ powder shows great potential in the field of energy storage

​High-purity vanadium hydride powder, its chemical formula is VH₂; in metal hydrides, the common hydride form of vanadium may be polyhydride or complex hydride; these compounds may have a more complex chemical formula and structure.

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New applications of calcium hydride CaH ₂ powder in energy and environmental protection fields

​Calcium Hydride CaH2 Powder refers to calcium hydride powder.

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Innovative Application of Zirconium Hydride ZrH2 Powder in the Energy and Nuclear Industry

Zirconium hydride powder is an inorganic compound composed of zirconium and hydrogen.

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High purity neodymium nitride NdN powder shines brightly in the fields of new energy and high-tech

High Purity Neodymium Nitride NdN Powder is a high-purity compound powder mainly composed of neodymium (Nd) and nitrogen (N) elements. Neodymium is a rare earth element with unique magnetic and optical properties, while nitrogen is a non-metallic element that typically appears as an anion in compounds.

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High purity vanadium hydride VH2 powder shows broad application prospects in the field of new energy

High-purity vanadium hydride powder with a purity of up to 99% is a transition metal hydride with a molecular formula of VH2 and a molecular weight of 55.9812. Vanadium hydride has some special physical and chemical properties. For example, when the temperature rises from 25 ℃ to 200 ℃, the pressure of hydrogen released from vanadium hydride will sharply increase, making it an ideal compressor material. However, it should be noted that the stability of vanadium hydride is not strong, and its dissociation and decompression have reached 1.01 × 105Pa at a temperature of 13 ℃. This high-purity vanadium hydride powder may have a wide range of applications in various fields, including electronics, energy, and chemical engineering. Due to its high purity, it may be particularly useful in applications that require precise control of material composition and properties.

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Nano-Aluminum Powder: Opening a New era of Clean Energy

Nano-aluminum powder has a wide range of applications in clean energy, including fuel cells, lithium-ion batteries, and solar and wind energy. With the continuous development of nanotechnology and the continuous expansion of the clean energy market, applying nano-aluminum powder will be more extensive and in-depth.

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The Application Prospect of Copper Selenide in The Field of New Energy Was Discussed

Copper selenide plays an important role in the field of materials science. Its unique physical and chemical properties and its application prospects in new energy, environmental protection, biomedicine and other fields make copper selenide a hot spot in current research. This paper will focus on the importance of copper selenide in materials science, including its potential as a functional, structural, and composite material.

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High Purity Molybdenum Disulfide MoS2 Powder CAS 1317-33-5, 99%

Molybdenum is a disulfide. Molybdenite is a solid black powder with a metallic luster. Chemical formula MoS2, melting point 1185, density 4.80g/cm3 (14), Mohs hardness 1.0~1.5.Particle size 80nm, 1,5 microns, and 5 microns Purity: 99% Molybdenum Di

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Crystal Structure and Phase Transition Analysis of Iron Disilicide FeSi2 Powder

Iron silicide (FeSi2) is an important silicon-based material with excellent physical and chemical properties widely used in microelectronics, solar cells, catalyst carriers and composite materials. The crystal structure and phase transformation of ferrosilicide have important effects on its properties, which is one of the key problems in the study and application of ferrosilicide.

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High Purity MAX Special Ceramics Material Titanium Silicon Carbide Ti3SiC2 Powder,99%

The electrical conductivity of titanium silicon carbide (Ti3SiC2) is high. Purity: 99%Particle Size: 325 Mesh About Titanium Silicon Carbide T3SiC2 Ti3SiC2 Puffer: Titanium carbide, with its chemical formula Ti3SiC2

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