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Perovskite Quantum Dots, cadmium free, hydrophobic

  • Cd-free strongly luminescent perovskite quantum dots of structure ABC3 coated with hydrophobic organic ligands.
  • Readily soluble in toluene, hexane, chlorobenzene and similar dry solvents.
  • Not soluble in alcohols, ethers and other polar solvents.
  • Emission peak width (FWHM) ca. 15-35 nm.
  • Particle size: ca. 10 nm.
  • Ideal for industrial applications due to the large scale manufacturing, and the lowest prices among all available QDs.
Description

(Ranges Available) – 450±15 nm to 690±15 nm

SKU: RN-PL-QD-PSK Category: Tags: , ,

Perovskite Cd-free Quantum Dot Kit

  • One kit of four types of quantum dots, 10 mg, 25 mg or 100 mg each type: Supplied as dry powder. Soluble in hexane, toluene etc.
  • Lapis – λem. 450 ± 15 nm
  • Blue – λem. 480 ± 15 nm
  • Green – λem. 515 ± 15 nm
  • Red – λem. 630 ± 30 nm
 
Pack Sizes
Catalogue No.Quantity
PL-QD-PSK-Kit5 4 x 5 mg5mg
PL-QD-PSK-Kit5 4 x 50 mg50mg
PL-QD-PSK-Kit5 4 x 500 mg500mg

Product Overview

Hiyka's Cadmium-Free, Hydrophobic Perovskite Quantum Dots mark a significant advancement in the field of nanomaterials, offering a safer, environmentally friendly alternative to traditional quantum dots without sacrificing performance. Engineered for superior luminescence and stability, these quantum dots are designed for a broad spectrum of applications, from optoelectronics and photonics to advanced coatings and biomedical research. Our hydrophobic formulation ensures easy integration into various organic solvents and matrices, providing flexibility and ease of use in product development and research.

Key factor

Cadmium-Free Composition: Offers a non-toxic, environmentally friendly alternative, ensuring safety in manufacturing and application.
High Luminescence:
Provides bright, vivid colors with a high quantum yield, ideal for display technologies, LED lighting, and bioimaging.
Hydrophobic Nature:
Ensures compatibility with non-aqueous solvents and polymers, facilitating seamless integration into industrial and research applications.
Stable and Durable:
Exhibits enhanced photostability and resistance to environmental factors, ensuring long-lasting performance.
Tunable Emission:
Capable of emitting light across a wide spectral range, allowing for customization to specific application needs

Applications

Optoelectronic Devices: Perfect for next-generation displays, LEDs, and solar cells requiring high efficiency and tunability.
Photonics Research:
Enables cutting-edge studies in light manipulation and quantum computing with customizable optical properties.
Biomedical Imaging:
Suitable for bioimaging applications where non-toxicity and high contrast are essential.
Advanced Coatings:
Enhances paints and coatings with luminescent properties for automotive, aerospace, and consumer goods.
Security and Branding:
Offers a unique solution for anti-counterfeiting measures and brand protection with distinct optical signatures.

Advantages

  • Environmental and Safety Benefits: Reduces potential health and environmental risks associated with cadmium-containing quantum dots.
  • Superior Optical Performance: Delivers outstanding brightness and color purity, enhancing the visual quality of various applications.
  • Versatility in Use: Hydrophobic formulation allows for broad application in non-aqueous environments, expanding the range of potential uses.
  • Durability and Reliability: Engineered for stability, providing reliable results in demanding applications.
  • Innovative Material: Supports the development of new technologies and products with cutting-edge luminescent properties.

References 

  1. Su, Q.; Chen, S. Thermal assisted up-conversion electroluminescence in quantum dot light emitting diodes. Nat. Commun. 2022, 13, 369.
  2. Yang, L.; Li, X.; Yang, Q.; Wang, S.; Tian, H.; Ding, J.; Wang, L. Efficient narrowband red electroluminescence from a thermally activated delayed fluorescence polymer and quantum dot hybrid. Chem. Eng. J. 2022, 436, 135221.
  3. Singh, R.K.; Chen, L.H.; Singh, A.; Jain, N.; Singh, J.; Lu, C.H. Progress of backlight devices: Emergence of halide perovskite quantum Dots/Nanomaterials. Front. Nanotechnol. 2022, 29, 863312.
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    For additional information, please refer to the contact details mentioned on the label. 

    For bulk orders contact us on [email protected]

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