4.7 Article

Silver-enhanced fluorescence of bimetallic Au/Ag nanoclusters as ultrasensitive sensing probe for the detection of folic acid

期刊

TALANTA
卷 233, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.talanta.2021.122469

关键词

Bovine serum albumin; Fluorescence; Folic acid; Metal nanocluster; Quenching; Sensing probe

资金

  1. National Natural Science Foundation of China [21575134, 21633008, 21773224]
  2. National Key Research and Development Plan [2016YFA0203200]
  3. K. C. Wong Education Foundation
  4. Chinese Government Scholarship under China Scholarships council (CSC)

向作者/读者索取更多资源

Folic acid is a crucial water-soluble vitamin deficiency of which leads to various abnormalities in the human body. Researchers successfully synthesized luminescent Au-Ag bimetallic nanoclusters for folic acid detection, showing high sensitivity and low detection limit.
Folic acid (FA) is the natural form of water-soluble vitamins widely found in most plants and animal products and its deficiency leads to several human body abnormalities. The advancements of metal nanoclusters are highly increasing due to their molecule-like optical properties and attractive applications. Because of increasingly demand of noble metal nanoclusters as sensing templates, different synthesis methods have been developed for facile synthesis of noble metal nanoclusters. Herein, red-emitting fluorescent bovine serum albumin (BSA)-capped Au-Ag bimetallic NCs are facilely synthesized through green one-pot synthetic approach. The effect of silver on the fluorescence properties of Au NCs was investigated and it was found that introduction of silver can enhance the fluorescence intensity. The fluorescence intensity of the as-prepared Au-Ag nanoclusters gets quenched in the presence of folic acid in an aqueous medium and it was used as ultrasensitive sensing probe for FA detection. The developed Au-Ag NCs-based sensing probe shows linear response in the wide range of 0-100 mu M and the detection limit is as low as 0.47 nM. Its applicability has also been confirmed successfully in real human serum, urine and FA tablet samples. Due to the high stability, sensitivity and selectivity, the developed bimetallic cluster sensing system is highly promising to be applied in the pharmaceutical and clinical laboratories.

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