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通过共振表面增强拉曼光谱和密度泛函理论探究金属离子-羧基配位络合物的构象变化和结合模式

Probing Conformation Change and Binding Mode of Metal Ion-Carboxyl Coordination Complex through Resonant Surface-Enhanced Raman Spectroscopy and Density Functional Theory.

作者信息

Ho Willis Kwun Hei, Bao Zhi Yong, Gan Xiaorong, Wong Kwok-Yin, Dai Jiyan, Lei Dangyuan

机构信息

Department of Applied Physics , The Hong Kong Polytechnic University , Hong Kong , China.

School of Materials Science and Engineering , Hefei University of Technology , Hefei 230009 , China.

出版信息

J Phys Chem Lett. 2019 Aug 15;10(16):4692-4698. doi: 10.1021/acs.jpclett.9b01435. Epub 2019 Aug 6.

Abstract

Understanding carboxyl-metal ligand interaction has great significance in analytical chemistry. Herein, we use resonant surface-enhanced Raman scattering (SERS) to probe the physiochemical interaction and conformation change in several metal ion-carboxyl coordination complex systems adsorbed on the surface of plasmonically resonant metal nanostructures. Our SERS results and density function theory calculations jointly reveal that low-valence metal ions (such as K and Pb) tend to bind to the carboxyl active site of a Raman tag molecule, 4-mercaptobenzoic acid (4-MBA), in a unidentate binding mode of low binding energy whereas high-valence metal ions (such as Fe) favor a bidentate binding mode of relatively high binding energy. Particularly, Pb-ion concentration-dependent SERS suggests a repulsive interaction among the coordination complex leading to a tilted configuration of 4-MBA on the metal surface. This work indicates the resonant SERS approach is suitable not only for studying the carboxyl-metal ligand interaction but also for detecting various types of heavy metal ions at low concentrations.

摘要

理解羧基-金属配体相互作用在分析化学中具有重要意义。在此,我们利用共振表面增强拉曼散射(SERS)来探测吸附在等离子体共振金属纳米结构表面的几种金属离子-羧基配位络合物体系中的物理化学相互作用和构象变化。我们的SERS结果和密度泛函理论计算共同表明,低价金属离子(如K和Pb)倾向于以低结合能的单齿结合模式与拉曼标记分子4-巯基苯甲酸(4-MBA)的羧基活性位点结合,而高价金属离子(如Fe)则倾向于以相对高结合能的双齿结合模式。特别地,Pb离子浓度依赖的SERS表明配位络合物之间存在排斥相互作用,导致4-MBA在金属表面呈倾斜构型。这项工作表明共振SERS方法不仅适用于研究羧基-金属配体相互作用,还适用于检测低浓度的各种重金属离子。

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