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            美國布魯克海文儀器公司>公司動態>ZetaPALS測量應用案例-2016-13

            公司動態

            ZetaPALS測量應用案例-2016-13

            閱讀:205          發布時間:2016-5-26

            文獻名: Adsorption of carbendazim pesticide on plasmonic nanoparticles studied by surface-enhanced Raman scattering

            作者: L.N. Furinia, C.J.L. Constantinoa, S. Sanchez-Cortesb, J.C. Oteroc, I. López-Tocónc
            a FCT, Universidade Estadual Paulista, Presidente Prudente, SP, Brazil
            b Instituto de Estructura de la Materia, CSIC, Serra21, E-28006 Madrid, Spain
            c Department of Physical Chemistry, Faculty of Science, University of Málaga, Unidad Asociada CSIC, E-29071 Málaga, Spain


            摘要:Surface-Enhanced Raman Spectra (SERS) of methyl N-(1H-benzimidazol-2-yl)carbamate (MBC), usually named carbendazim, have been recorded on silver colloids at different pH values. In order to identify the neutral, protonated or deprotonated species of MBC that originate the SERS, the vibrational wavenumbers of these three isolated forms and linked to a silver atom have been predicted by carrying out DFT calculations. The results indicate that the active SERS species in the studied pH range correspond to the neutral MBC and its deprotonated ion in the amidate form. According to theoretical calculations, neutral MBC is linked to the metal through the imidazolic nitrogen atom, while the deprotonated MBC could be linked through the imidazolic nitrogen together with the amidic nitrogen atom or the carbonyl oxygen atom. Both adsorbed species, neutral and deprotonated, have the benzimidazolic ring orientated almost perpendicular to the silver surface and no molecular reorientation has been detected. pH of the bulk controls the relative abundance of the neutral MBC and its amidate anion which can be monitored through the intensities of the SERS bands recorded at about 1230 and 1270 cm−1. These two key bands correspond to the in-plane NH deformation of amidic and imidazolic groups, respectively.

            關鍵詞:SERS spectroscopy; Adsorption on colloidal suspensión; Carbendazim
             

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