3.8 Proceedings Paper

Concentration of gold nanoparticles at near Zero-cost

Journal

MATERIALS TODAY-PROCEEDINGS
Volume 54, Issue -, Pages 255-258

Publisher

ELSEVIER
DOI: 10.1016/j.matpr.2021.08.306

Keywords

Gold nanoparticles; Sodium polyacrylate; Concentration of nanoparticles; Synthesis of gold nanoparticles

Funding

  1. Department of Science and Technology, DST-Water Technology Initiative (DST-WTI) [F.NO DST/TMD-EWO/WTI/2K19/EWFH/2019/315(G)]

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This article presents a zero-cost method for concentrating gold nanoparticle solution using sodium polyacrylate beads. It effectively reduces the cost of lateral flow technologies by achieving nanoparticle concentration with minimal expense.
Gold Nanoparticles synthesis typically delivers 0.025% of Nanoparticle solution. For lateral flow applications, this 0.025% solution is concentrated to 0.1% using ultracentrifugation at 14000 rpm for hours. This is one of the most expensive procedures in lateral flow device development, and it is recurring. We report a zero-cost solution for the concentration of gold nanoparticle solution to 0.025%-0.1%. In this approach, sodium polyacrylate (SPA) beads are used to concentrate gold NP solution. SPA beads have the capacity to absorb water, almost 100-500 times their weight. During this process, the interstitial spaces are too small to allow gold nanoparticles, and so only water is absorbed, leaving the gold nanoparticle solution. In a typical procedure, 50 mg SPA beads concentrate 500 mL of gold nanoparticle solution to 25 mL in less than two hours. The concentrated gold nanoparticle solution is shown to have the same nanoparticle size and UV absorption before concentration and after as well. The cost of commercial SPA beads of $10/kg, the solution can be viewed as a near zero-cost solution for gold nanoparticle concentration and significantly lower the capital as well as recurring costs of lateral flow technologies. Copyright (c) 2021 Elsevier Ltd. All rights reserved. Selection and peer-review under responsibility of the scientific committee of the 5th International Conference on Advanced Research in Mechanical, Materials and Manufacturing Engineering-2021

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