详细信息
In situ preparation of Ag nanoparticles by laser photoreduction as SERS substrate for determination of Hg2+ ( SCI-EXPANDED收录 EI收录)
文献类型:期刊文献
英文题名:In situ preparation of Ag nanoparticles by laser photoreduction as SERS substrate for determination of Hg2+
作者:Kang, Yan[1];Zhang, Han[1];Zhang, Lin[1];Wu, Ting[1];Sun, Lin[1];Jiang, Dong[1];Du, Yiping[1]
机构:[1]East China Univ Sci & Technol, Shanghai Key Lab Funct Mat Chem, Sch Chem & Mol Engn, 130 Meilong Rd, Shanghai 200237, Peoples R China
年份:2017
卷号:48
期号:3
起止页码:399
外文期刊名:JOURNAL OF RAMAN SPECTROSCOPY
收录:;EI(收录号:20231113722110);WOS:【SCI-EXPANDED(收录号:WOS:000396657800007)】;
基金:This work was supported by the General Administration of Quality Supervision, Inspection and Quarantine of China (2015IK201).
语种:英文
外文关键词:SERS; photoreduction; Ag nanoparticles; Hg2+; para-aminothiophenol
摘要:This paper reports a new way to fast produce surface-enhanced Raman scattering (SERS) substrate within 1 s by in situ photoreduction of AgNO3 and chemical compound containing mercapto group, such as para-aminothiophenol (PATP), dithizone, and 4-mercaptobenzoic acid on filter paper. Ag nanoparticles (Ag-NPs) would form in the area where the laser spot was focused by Raman instrument. In this work, the preparation of Ag-NPs and excitation of SERS signal could be achieved simultaneously within 1 s. However, no SERS signal and Ag-NPs were observed when rhodamine 6G and crystal violet were employed in place of the aforementioned molecules after the same operation. About 0.5 mu MPATP, 5 mu Mdithizone, and 1 mu M4-mercaptobenzoic acid could be fast detected by this method. According to this phenomenon, a fast and sensitive way to detect Hg2+ based on a competitive reaction among PATP, Ag+, and Hg2+ was developed. With the addition of Hg2+, PATP was removed from Ag+ owing to the stronger interaction between -SH and Hg2+. This behavior inhibited the formation of Ag-NPs, leading to a decrease of the intensity of the SERS signal. The decrease of SERS intensity was used to determine the concentration of Hg2+. Under optimal conditions, this methodcanbeutilized todetectHg(2+) at a detectable level of a concentration of 4 nMin aqueous solution. Additionally, the Raman mapping experiment demonstrated good point-to-point repeatability with a relative standard deviation of less than 7%. Therefore, this sensing platform is a promising candidate for fast and real-time mercuric ion detection. Copyright (c) 2016 John Wiley & Sons, Ltd.
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