Experience Nickel Phosphorus Trisulfide (nips3) Powder And Crystal In Multiple Colors [Tr14I0of]
Experience Nickel Phosphorus Trisulfide (nips3) Powder And Crystal In Multiple Colors [Tr14I0of]: The Future of Advanced Materials At the forefront of advanced materials research, Nickel Phosphorus Trisulfide (NiPS3) powder and crystal offer a revolutionary solution for next-generation elec
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Experience Nickel Phosphorus Trisulfide (nips3) Powder And Crystal In Multiple Colors [Tr14I0of]: The Future of Advanced Materials
At the forefront of advanced materials research, Nickel Phosphorus Trisulfide (NiPS3) powder and crystal offer a revolutionary solution for next-generation electronics, optoelectronics, and nanotechnology. This cutting-edge material boasts an impressive array of properties, making it a sought-after choice for innovative applications. With its high purity and unique physical characteristics, NiPS3 stands out as a key player in the development of new technologies.Key Features and Specifications
Nickel Phosphorus Trisulfide (NiPS3) is a layered quasi-two-dimensional antiferromagnetic semiconductor with a remarkable bandgap energy of approximately 1.6 eV. Its unique structure, which includes layers of covalently bonded clusters of [P2Se6]4- dumbbell bipyramids, allows for easy exfoliation into few-layer nanosheets. This material is prepared through the synthetic method of Chemical Vapour Transport (CVT), ensuring the highest quality and purity. Key specifications include a CAS Number of N/A, a molecular weight of 185.86 g/mol, and a monoclinic crystal structure. The high purity of NiPS3, with powder purity at ≥99.995% and crystal purity at ≥99.999%, guarantees the reliability and consistency of your research and development efforts.Applications and Benefits
Nickel Phosphorus Trisulfide (NiPS3) powder and crystal are versatile materials with a wide range of applications. They can be used to prepare monolayer and few-layer NiPS3 sheets via mechanical or liquid exfoliation, making them ideal for various electronic devices. NiPS3 nanosheets exhibit n-type semiconducting behavior with an on/off ratio of 10^3–10^5, making them suitable for humidity sensors, field-effect transistors (FETs), modulators, switches, and health and environmental monitoring devices. Furthermore, few-layer NiPS3 nanosheets have great potential as anodes for lithium-ion batteries (LIBs), offering excellent electrochemical properties in terms of stable cycling performance and rate capabilities. With these applications in mind, NiPS3 is a must-have material for researchers and engineers looking to push the boundaries of technology.What Our Customers Say
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