Worldwide Shipping Zirconium Disulfide (zrs2) Powder And Crystal Now 45% Cheaper [tEDInliG]
High Purity Worldwide Shipping Zirconium Disulfide (zrs2) Powder And Crystal Now 45% Cheaper [tEDInliG] Discover the cutting-edge material that is revolutionizing next-generation electronics, optoelectronics, and nanotechnology. Our Zirconium Disulfide (ZrS2) powder and crystal offer exceptional
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High Purity Worldwide Shipping Zirconium Disulfide (zrs2) Powder And Crystal Now 45% Cheaper [tEDInliG]
Discover the cutting-edge material that is revolutionizing next-generation electronics, optoelectronics, and nanotechnology. Our Zirconium Disulfide (ZrS2) powder and crystal offer exceptional purity and versatility, making them ideal for a wide range of applications. With a layered structure and a direct band gap, ZrS2 is a promising semiconductor material with high carrier mobility and low power consumption.Unmatched Purity and Technical Specifications
Our ZrS2 powder and crystals are of the highest purity, exceeding 99.999% for crystals and 99.995% for powder. This ensures consistent and reliable performance in your applications. The molecular weight of ZrS2 is 155.35 g/mol, and it belongs to the group IV transition metal dichalcogenides (TMDCs). With a bandgap of approximately 1.7 eV (indirect) and 2.0 eV (single or few-layer), ZrS2 is well-suited for optoelectronic devices, thermoelectrics, and photovoltaic applications.- High Purity: ≥99.999% for crystals and ≥99.995% for powder
- Layered Structure: Consists of zirconium and sulfur atoms in a sandwich-like arrangement
- Direct Band Gap: Suitable for optoelectronic and photovoltaic devices
Applications and Benefits
Zirconium Disulfide (ZrS2) is a versatile material with numerous applications in various industries. Its high carrier mobility and direct band gap make it an excellent choice for low-power devices, photodetectors, FETs, and catalytic hydrogen production. The powder form is ideal for preparing nanoplates and ultrathin films, while the crystal form can be used to produce single or few-layer sheets via mechanical or liquid exfoliation.- Optoelectronics: Suitable for low-power devices, photodetectors, and FETs
- Nanotechnology: Can be used to produce nanoplates and ultrathin films
- Photovoltaic: Ideal for thermoelectrics and photovoltaic applications
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