Cdte Core Type Cooh Functionalized Quantum Dots, Fluorescence 710 Nm (Hydrophilic) | 19960 | SRL Chem

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Cdte Core Type Cooh Functionalized Quantum Dots, Fluorescence 710 Nm (Hydrophilic) | 19960 | SRL Chem

CdTe Core Type COOH Functionalized Quantum Dots with 710 nm fluorescence, ideal for various lab applications.

23,000.00

Description

Specifications Table

Product Name-CdTe Core Type COOH Functionalized Quantum Dots, Fluorescence 710 nm (Hydrophilic) Quantity/Pack Size-10 Mg Form-Hydrophilic Grade-Research Grade Application-Fluorescence

Product Overview

CdTe Core Type COOH Functionalized Quantum Dots, Fluorescence 710 nm (Hydrophilic) are advanced quantum dots designed for high-performance fluorescence applications. These quantum dots feature a cadmium telluride (CdTe) core with carboxylic acid (COOH) functionalization, ensuring excellent water solubility and stability. The 710 nm fluorescence wavelength makes them suitable for a wide range of biological and chemical research applications. The COOH functionalization allows for easy conjugation with biomolecules, enhancing their utility in various assays and imaging techniques. These quantum dots are manufactured to the highest standards, ensuring consistent performance and reliability for your research needs.

FAQs

1. What are the primary applications of CdTe Quantum Dots?

CdTe Quantum Dots are primarily used in fluorescence imaging, biological labeling, and various research applications requiring high-quality fluorescent probes.

2. Are these quantum dots compatible with biological samples?

Yes, the COOH functionalization makes these quantum dots highly compatible with biological samples, allowing for easy conjugation with biomolecules.

3. What is the fluorescence wavelength of these quantum dots?

The fluorescence wavelength of these quantum dots is 710 nm, making them suitable for a wide range of applications requiring red fluorescence.

4. How should these quantum dots be stored?

These quantum dots should be stored at 4°C in a dark environment to maintain their stability and performance.

5. Can these quantum dots be used in academic research?

Yes, these quantum dots are ideal for academic research, providing reliable and consistent performance for various lab applications.

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