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MSE PRO 10mL Gold (Au) Nanostars Water Dispersion, 50μg/mL– MSE Supplies LLC

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MSE PRO 10mL Gold (Au) Nanostars Water Dispersion, 50μg/mL - MSE Supplies LLC

MSE PRO 10mL Gold (Au) Nanostars Water Dispersion, 50μg/mL

SKU: PO9490

  • $ 80995



MSE PRO™ 10mL Gold (Au) Nanostars Water Dispersion, 50μg/mL

MSE supplies offers Gold (Au) Nanostars Water Dispersion, 50μg/mLGold (Au) nanostars water dispersion showcases non-spherical gold nanomaterials with remarkable near-infrared surface plasmon resonance, making them ideal for converting light into heat in photothermal therapy. Widely employed in cancer imaging, such as intraoperative Raman-guided tumor resection, and photothermal tumor treatments, these nanostars possess tunable optical properties that offer versatility. Innovative designs enable the coupling of chemotherapy drugs, enhancing their potency. With multiple corners featuring field amplification effects, they excel in biosensors, surface plasmon resonance enhancement, and biosensing applications.

Buy Gold (Au) Nanostars Water Dispersion at MSE Supplies for the best prices on the market. For bulk orders, please contact us for a quote. 

Technical Specifications:

CAS Number

7440-57-5

Chemical Formula

Au

SKU#

PO9490

Package

10 mL/bottle

Concentration

50 μg/mL

Modifying Material

HEPES

Optical Density

0.8 – 1.0

Storage

4°C in a light-protected environment

Reference:

[1]: B. Becerril-Castro, I. Calderon, N. Pazos-Perez, L. Guerrini, F. Schulz, N. Feliu, I. Chakraborty, V. Giannini, W. J. Parak, R. A. Alvarez-Puebla, Gold Nanostars: Synthesis, Optical and SERS Analytical Properties.Anal. Sens.20222, e202200005.

[2]: Wenxin Niu, Yi An Alvin Chua, Weiqing Zhang, Hejin Huang, and Xianmao Lu. Highly Symmetric Gold Nanostars: Crystallographic Control and Surface-Enhanced Raman Scattering Property. Journal of the American Chemical Society 2015 137 (33), 10460-10463

[3]: Khoury CG, Vo-Dinh T. Gold Nanostars For Surface-Enhanced Raman Scattering: Synthesis, Characterization and Optimization. J Phys Chem C Nanomater Interfaces. 2008;2008(112):18849-18859.