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ZnCdSe/ZnS (core/shell)Quantum Dots, powder, hydrophobic

  • Highly luminescent semiconductor nanocrystals coated with hydrophobic organic molecules.
  • Readily soluble in hexane, heptane, toluene, chloroform, tetrahydrofuran, pyridine.
  • Not soluble in water, alcohols, ethers.
  • 440 ± 5 nm to 480 ± 5 nm
  • Diffrent pack sizes and grades available

Product Overview

Hiyka's ZnCdSe/ZnS Core-Shell Quantum Dots Powder represents the pinnacle of quantum dot technology, offering unmatched luminescence and stability in a hydrophobic powder format. Engineered for easy integration into non-aqueous systems, these quantum dots combine the exceptional optical properties of the ZnCdSe core with the enhanced photostability and chemical resistance of the ZnS shell. Ideal for cutting-edge applications in optoelectronics, photonics, and high-performance coatings, our hydrophobic quantum dots powder provides a versatile solution for integrating quantum dot technology into various industrial and research applications.

Key factor

Superior Luminescence: Exhibits bright, vivid colors across a broad spectrum with high quantum yield, enhancing the visual quality of any application.
Enhanced Stability:
The ZnS shell offers superior protection against photobleaching and oxidative degradation, ensuring long-lasting performance.
Hydrophobic Formulation:
Specially designed for compatibility with organic solvents and polymers, facilitating seamless incorporation into a variety of materials.
High Purity:
Manufactured through a rigorous synthesis process to ensure high purity and consistency, enabling reliable performance across applications.
Versatile Use:
Suitable for a wide range of applications, including LED lighting, display technologies, solar cells, and security inks, as well as in research settings.

Applications


High-Performance Coatings:
Ideal for creating luminescent paints and coatings that require durability and resistance to environmental factors.
Biomedical Imaging:
Suitable for non-aqueous bioimaging applications, offering precise targeting and high-contrast imaging capabilities.
Security and Brand Protection:
Utilized in anti-counterfeiting measures for currencies, official documents, and high-value products.
Scientific Research:
A valuable tool for exploring the properties of quantum dots and their potential in new technological advancements.

Advantages

  • Environmental Stability: Offers enhanced resistance to photobleaching and chemical degradation, suitable for use in outdoor and harsh environments.
  • Customizable Optical Properties: Available in various emission wavelengths, allowing for tailored solutions to specific application needs.
  • Easy to Integrate: Hydrophobic powder format ensures easy dispersion in non-aqueous media, enhancing product development flexibility.
  • High-Quality Material: Ensures robust performance and reliability in a variety of industrial and research applications, supporting innovation.
  • Sustainable Technology: Supports the development of green technologies and products with potential for energy efficiency and reduced environmental impact.

References 

  1. The diamagnetic susceptibility of a donor in a semiconductor core shell quantum dot
    Sudharshan, M. S.; Subhash, P.; Shaik, Nagoor Babu [Department of Mechanical Engineering, Saveetha School of Engineering, Saveetha University, Thandalam, Chennai – 602105 (India); Kalpana, P.; Jayakumar, K. [Department of Physics, Gandhigram Rural University, Gandhigram, Tamilnadu-624302 (India); Reuben, A. Merwyn Jasper D., E-mail: [email protected] [Department of Physics, Saveetha School of Engineering, Saveetha University, Thandalam, Chennai – 602105 (India)
  2. Ultrafast light matter interaction in CdSe/ZnS core-shell quantum dots
    Yadav, Rajesh Kumar; Sharma, Rituraj; Mondal, Anirban; Adarsh, K. V.
    2018-04-01
  3. One-pot synthesis of stable water soluble Mn:ZnSe/ZnS core/shell quantum dots
    Zhang Hao; Gao Xue; Liu Siyu; Su Xingguang, E-mail: [email protected] [College of Chemistry, Jilin University, Department of Analytical Chemistry (China)
    2013-06-15
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