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NN3624 Carboxyl-functionalized Upconverting Nanoparticles (UCNs)

Catalog No. NN3624
Compositions NaYREF4, RE: Yb, Er, Tm, Gd, Mu, Lu
Particle Size 35nm
Coating Material dSiO2-COOH
Synonyms Functionalized UCNs
Em. Wavelength 365nm/475nm,545nm/660nm,804 nm

Carboxyl-functionalized Upconverting Nanoparticles contain amino functionalized NaYREF4 (RE:Yb, Er, Tm, Gd, Mn, Lu) UCNs with optimal excitation wavelength at 975 nm. Stanford Advanced Materials (SAM) offers high-quality Upconverting Nanoparticles with competitive pricing.

Related products: Oil dispersible upconverting nanoparticles, Ligand-free Upconverting Nanoparticles (UV Light), Amino-functionalized Upconverting Nanoparticles

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Carboxyl-functionalized Upconverting Nanoparticles (UCNs)
Carboxyl-functionalized Upconverting Nanoparticles (UCNs)
Carboxyl-functionalized Upconverting Nanoparticles (UCNs)
Carboxyl-functionalized Upconverting Nanoparticles (UCNs)
Description
Specification

Carboxyl-functionalized Upconverting Nanoparticles Description

Carboxyl-functionalized Upconverting Nanoparticles contain amino-functionalized NaYREF4 (RE: Yb, Er, Tm, Gd, Mn, Lu) UCNs with optimal excitation wavelength at 975 nm. The sensitizer is Yb3+, and the activator is Er3+ or Tm3+. The doping concentrations are optimized, leading to strong upconverted emissions at specific wavelengths. The nanoparticles are highly hydrophilic due to the silica coating or PEG coating. The UCNs are of high quantum efficiency and very photostable

After proper surface modification and functionalization, the products can be used for fluorescence imaging, biodetection, immunity analysis, and photoactivation of anti-cancer drugs and biomolecules.

Carboxyl-functionalized Upconverting Nanoparticles Specification

Em. Wavelength

365nm/475nm,545nm/660nm,804 nm

Material Composition

NaYREF4, RE: Yb, Er, Tm, Gd, Mu, Lu

Excitation Wavelength

975nm

Particle Size

35nm

Coating

dSiO2-COOH

Synonyms

Functionalized UCNs

Solvent

Water/Ethanol

Carboxyl-functionalized Upconverting Nanoparticles Applications

It can be used for fluorescence imaging, biodetection, immunity analysis, and photoactivation of anti-cancer drugs and biomolecules.

  • Fluorescence Imaging: Leveraging their photon conversion capabilities, these nanoparticles enable high-resolution imaging, facilitating precise visualization at cellular and subcellular levels, particularly beneficial in biomedical research.
  • Biodetection Advancements: These sensitive probes offer rapid and accurate detection of biological markers, aiding in assays, diagnostics, and biosensing applications, amplifying their significance in various detection processes.
  • Immunity Analysis: In immunology studies, these nanoparticles track immune components, contributing to a comprehensive understanding of immune responses and interactions, and fostering advancements in immune-related research.
  • Photoactivation in Therapy: Enabling controlled drug activation through near-infrared light conversion, these nanoparticles promise precision in drug delivery, offering potential breakthroughs in targeted therapies, notably in cancer treatment.

Carboxyl-functionalized Upconverting Nanoparticles Packaging

Our Carboxyl-functionalized Upconverting Nanoparticles are carefully handled during storage and transportation to preserve the quality of our product in its original condition.

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