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INP ZNS QUANTUM DOTS

INP ZNS QUANTUM DOTS

Product Details:

  • Shape Spherical Nanoparticles
  • HS Code 28500090
  • Solubility Water Dispersible
  • Form Aqueous Solution
  • Smell Odorless
  • Storage Store at 2-8C, protect from light
  • Other Names InP/ZnS Quantum Dots
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INP ZNS QUANTUM DOTS Product Specifications

  • >95%
  • InP/ZnS
  • Yes
  • InP/ZnS Quantum Dots
  • Indium Phosphide/Zinc Sulfide (InP/ZnS)
  • Odorless
  • Store at 2-8C, protect from light
  • Aqueous Solution
  • Optoelectronic Devices, Biological Imaging, Medical Diagnostics, LEDs, Solar Cells
  • Industrial Grade
  • Water Dispersible
  • Nanomaterial
  • Quantum Dots
  • Spherical Nanoparticles
  • 28500090
  • Indium Phosphide/Zinc Sulfide Quantum Dots
  • Laboratory/Industrial
  • Industrial

INP ZNS QUANTUM DOTS Trade Information

  • Australia, North America, Eastern Europe, Middle East, Africa, Central America, South America, Western Europe, Asia
  • All India

Product Description

Concentration: 1mg/mL to 20 mg/mL (in stock)

Concentration Customization: Possible (please email to sales@chemazone.in)

Carrier: Water, Ethanol, IPA, NMP, DMF, Methanol, Toluene

Dispersion Customization: Possible (please email to sales@chemazone.in)

Size: 10 mL-100 mL



Advanced Nanomaterial for Optoelectronics

INP ZNS Quantum Dots are engineered for superior performance in optoelectronic devices. Their high quantum yield and customizable luminescence make them ideal for cutting-edge displays, efficient solar cells, and visible-light LEDs. Water dispersibility and functionalized surfaces facilitate integration into varied technologies, driving innovation across multiple industries.


Optimized for Biological and Medical Uses

Thanks to their water solubility, customizable emission, and non-toxic formulation, INP ZNS Quantum Dots are highly advantageous in biological imaging and medical diagnostics. Their spherical structure and high purity contribute to consistent, reliable results in biomedical applications, with smooth dispersion in aqueous media ensuring efficient labeling and visualization.

FAQs of INP ZNS QUANTUM DOTS:


Q: How can INP ZNS Quantum Dots be applied in laboratory or industrial settings?

A: These quantum dots can be incorporated into optoelectronic devices, used in biological imaging and diagnostics, or embedded in LEDs and solar cells. Their water dispersibility and customizable luminescence enable easy adaptation to numerous experimental and manufacturing processes.

Q: What makes InP/ZnS Quantum Dots suitable for biological imaging?

A: Their non-toxic nature, water solubility, and surface functionalization with carboxyl or hydroxyl groups facilitate seamless integration into biological environments, ensuring clear visualization and minimal interference with biological systems.

Q: When should these quantum dots be stored, and at what conditions?

A: INP ZNS Quantum Dots should be stored immediately upon receipt at 2-8C, protected from light. Adhering to these conditions preserves their optimal luminescent properties and maintains their dispersion quality.

Q: Where can INP ZNS Quantum Dots be sourced for large-scale use?

A: They are available through various channels such as dealers, exporters, importers, manufacturers, producers, retailers, suppliers, traders, and wholesalers, ensuring accessibility for both laboratory and industrial-scale requirements.

Q: What is the process for customizing the luminescence peak wavelength?

A: The peak wavelength can be tailored during synthesis by adjusting the quantum dot size and composition. This process allows for precise tuning to match the specific spectral needs of different applications.

Q: What are the primary benefits of using these quantum dots in optoelectronic devices?

A: They offer high quantum yield, tunable emission, excellent dispersion in water, and reliable purity (>95%). Such features result in improved device efficiency, vibrant color fidelity, and long-term stability in commercial products.

Q: How does the choice of surface functionalization enhance quantum dot usage?

A: Available carboxyl and hydroxyl groups promote compatibility with various substrates and biological entities, increase colloidal stability in aqueous solutions, and are beneficial for conjugation in targeted imaging or diagnostic approaches.

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