New Edition Molybdenum Tungsten Diselenide (mowse2) Powder For Home [9XAvdSZK]
Molybdenum Tungsten Diselenide Powder: High-Quality 2D TMDC Alloy Introducing our premium MoWSe2 Powder, a cutting-edge 2D Transition Metal Dichalcogenide (TMDC) alloy designed to revolutionize your research and applications. This high-quality powder
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New Edition Molybdenum Tungsten Diselenide (mowse2) Powder For Home [9XAvdSZK]
Molybdenum Tungsten Diselenide Powder: High-Quality 2D TMDC Alloy
Introducing our premium MoWSe2 Powder, a cutting-edge 2D Transition Metal Dichalcogenide (TMDC) alloy designed to revolutionize your research and applications. This high-quality powder boasts exceptional purity, exceeding 99.995%, ensuring the reliability and consistency of your experiments. Our MoWSe2 Powder is a game-changer in the field of nanotechnology, offering a wide range of applications in various industries.Key Properties and Specifications
Our MoWSe2 Powder features a unique hexagonal crystal structure, characterized by alternating Mo and Se sites in the hexagonal rings, with Mo atoms partially substituted by W atoms. This innovative alloy exhibits a tunable band gap of approximately 1.56 to 1.65 eV, making it ideal for various optoelectronic applications. The powder is synthesized using the Chemical Vapour Transport (CVT) method, ensuring high purity and exceptional quality. Key specifications include a molecular weight of 297.83 g/mol and a black color, classifying it as a Transition Metal Dichalcogenides (TMDCs) alloy, 2D semiconductor materials, Nano-electronics, and Nano-photonics.Applications and Benefits
Our MoWSe2 Powder finds extensive applications in photodetectors, Field-Effect Transistors (FETs), Light-Emitting Diodes (LEDs), and photovoltaic devices. Its tunable band gap and direct band gap nature make it highly suitable for hydrogen evolution reactions (HER) and other optoelectronic applications. By utilizing our MoWSe2 Powder, researchers and engineers can create innovative solutions for various industries, including energy, electronics, and photonics. Its strong photoluminescence emission further enhances its potential in optoelectronic applications, making it a valuable material for advancing technology and innovation.What Our Customers Say
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