

Product Name
Name:Violet Phosphorus powder
Product Overview
Purple phosphorus, also known as Hitov phosphorus, is a layered semiconductor elemental phosphorus structure. It is the third non-metallic elemental layered material with a fully determined three-dimensional crystal structure since the discovery of graphene and black phosphorus.After peeling off, a thin layer of purple phosphorus can be obtained, called purple phosphorene, which is more stable than black phosphorene.
The main method for synthesizing purple phosphorus crystals is chemical vapor transport. By adjusting the synthesis parameters, high crystalline and high-purity purple phosphorus crystals can be prepared with a yield of up to 80%. Purple phosphorus combines high carrier mobility and anisotropy, and has the characteristics of wide bandgap, stability, and easy stripping. It has broad application prospects in the fields of photonics, electronics, and semiconductors. For example, single-layer purple phosphorene has a high two-dimensional Young's modulus and is also expected to be used for gas sensing of NO ¡ãC O3, and SO ¡ãC As a negative electrode material for lithium-ion and sodium ion batteries, it also shows great potential.
In practical applications, the synthesis process of purple phosphorus crystals is relatively complex, which to some extent increases the difficulty of its research and application. However, with the continuous deepening of related research, purple phosphorus is expected to play an important role in more fields.
Technical Parameter
Appearance:powder
Product Features
Electrical properties: Purple phosphorus is a layered semiconductor elemental phosphorus structure, which is a two-dimensional material with high carrier mobility and anisotropy.
Easy peelability: Purple phosphorene can be obtained through mechanical peeling and liquid peeling methods.
Application Fields
Electronic and optoelectronic devices: Purple phosphorus has high carrier mobility and anisotropy, as well as wide bandgap, stability, and easy stripping properties, making it highly promising for applications in the field of electronic and optoelectronic devices.
Lithium ion batteries and sodium ion batteries: Purple phosphorus crystals have shown great potential as negative electrode materials for lithium ion batteries and sodium ion batteries.
Single atom catalysis: It can be used as a carrier for single atom catalysts, such as anchoring single atom Ni on the surface of few layer purple phosphorene through photocatalytic reduction method. The resulting photocatalyst exhibits good photocatalytic hydrogen evolution performance under visible light irradiation.
Optoelectronic synapse devices: forming heterostructures with other materials such as molybdenum sulfide, used to prepare optoelectronic synapse devices with high signal-to-noise ratio, high dynamic range, and multiple conductivity states, with potential applications in neural morphology calculation.
Related Information
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