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Study on Surface Enhanced Raman Scattering of Piperidine
Author: HanYing
Tutor: ZhangXiHe
School: Changchun University of Science and Technology
Course: Atomic and Molecular Physics
Keywords: Surface -enhanced Raman scattering Hexahydropyridine Silver film Silver sol
CLC: O437
Type: Master's thesis
Year: 2007
Downloads: 113
Quote: 0
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Abstract
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Surface-enhanced Raman scattering spectroscopy with high sensitivity can detect metal surface molecules adsorbed onto the surface of the phenomenon , but also given the wealth of molecular structure information . The same substances can be generated in a different active substrate different Raman enhancement effect . The This article selection Hexahydropyridine as a probe molecule , determined the the normal Hexahydropyridine Raman spectroscopy in silver sol , the silver surface of the membrane surface -enhanced Raman scattering spectroscopy ( SERS ) . The use of surface-enhanced Raman scattering techniques to study Hexahydropyridine SERS spectrum , its Raman peak identify and draw Hexahydropyridine the N atoms adsorbed on the silver electrode surface adsorption vertical configuration The adsorbed way . The simultaneous analysis of different Hexahydropyridine silver sol and silver membrane surface Raman scattering light intensity degree of enhancement . Due to the spacing of the metallic silver in the silver atoms is less than the spacing of the silver atoms in the sol , such that the surface of the metallic silver by hexahydropyrido restraining force is large, so the bond polarization rate increases, the induced dipole moment enhanced produce a better surface-enhanced Raman scattering . The state of a substance has a great influence on the electric field strength , the silver atoms of the silver film than the silver atoms in the sol electromagnetic field enhancement effect , but also makes hexahydro- pyridine in the surface of the silver film . Raman scattering degree of enhancement .
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CLC: > Mathematical sciences and chemical > Physics > Optics > Nonlinear optical ( light and matter)
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