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Gold nanoparticles with helical surface structure transformed from chiral molecules for SERS-active substrates preparation by Tingyang Xing; Qiuping Qian; Hao Ye; Zhihui Wang; Yanyan Jin; Ningxia Zhang; Meiyan Wang; Yunlong Zhou; Xiaoqing Gao; Lijun Wu is a Engineering article available to read on EtoBox.

What is Gold nanoparticles with helical surface structure transformed from chiral molecules for SERS-active substrates preparation about?

Surface-enhanced Raman scattering (SERS) technique has enlarged the application of Raman spectroscopy, and the most crucial problem is the exploration of SERS-active materials. In the paper, a SERS substrate made of helical gold nanoparticles by the directed synthesis of L-glutathione (L-GSH) was proposed. Because of the large surface specific area and the uneven conduction electrons distribution for sharp tips resulted from the complex concave surface and the symmetry breaking structure, The nanostructure has shown an impressive average enhancement factor (EF) of 2.95 × 10 under off-resonant condition. This phenomenon was explained by the experimental results and finite difference time domain (FDTD) method. Finally, the SERS substrates were used to detect thiram on pear with a limit of detection (LOD) of 0.62 mg/kg and R of 0.9772. The proposed SERS substrates suggest the potential application of chiral molecules such as amino acids, peptides et al. in the SERS-active materials fabrication.

Who reads Gold nanoparticles with helical surface structure transformed from chiral molecules for SERS-active substrates preparation?

It is typically read by researchers, students, and practitioners in Engineering.

Author
Tingyang Xing; Qiuping Qian; Hao Ye; Zhihui Wang; Yanyan Jin; Ningxia Zhang; Meiyan Wang; Yunlong Zhou; Xiaoqing Gao; Lijun Wu
Publisher
Elsevier BV
Published
2022
Language
EN
Field
Engineering (Physical Sciences)