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Photochemical Kinetics of Maleic to Fumaric Acid on Silver Nanoparticle Surfaces

机译:银纳米粒子表面上马来酸至富马酸的光化学动力学

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摘要

A visible photochemistry of maleic to fumaric acid adsorbed on silver nanoparticle surfaces was investigated as probed by SERS using a simple flow method.Photoisomerization of maleic to fumaric acid was consecutively observed in the condition of various flow rates,which varied the exposure time of laser beam.The sequential SERS spectra of maleic acid indicated that the photochemical isomerization and desorption took place simultaneously on silver nanoparticle surfaces as a function of laser fluency and wavelength.For 530.9 nm laser line excitation,the rate constant coefficients were obtained with a = 5.9 sec~(-1) mW for isomerization and b = 13.9 sec~(-1) mW for desorption,which k_1 = aI~n and k_2 = bI~m.Both reactions were one photon process (n = 1,m = 1) of a visible light and relatively fast process whose decay time was in the range of milli-second for 50 mW laser power.The rate of photochemical reaction increased on going toward the blue and photodesorption was a dominant process.A simple flow method used in this study was very useful to study a relatively fast photochemical reaction of molecules adsorbed on silver nanoparticle surfaces.
机译:采用简单流动方法通过SERS方法研究了吸附在银纳米颗粒表面的马来酸向富马酸的可见光化学反应。在各种流速条件下,连续观察到马来酸向富马酸的光异构化,改变了激光的曝光时间马来酸的连续SERS光谱表明,银纳米粒子表面上的光化学异构化和解吸同时发生,是激光通量和波长的函数。对于530.9 nm激光线激发,获得的速率常数系数为a = 5.9 sec〜 (-1)异构化的mW和b = 13.9 sec〜(-1)的解吸的mW,其中k_1 = aI〜n和k_2 = bI〜m。两个反应都是一个光子过程(n = 1,m = 1)。一个可见光且相对较快的过程,对于50 mW的激光功率,其衰减时间在毫秒范围内。光化学反应的速率朝着蓝色方向增加,并且光解吸是主要过程。本研究中使用的简单流动方法对于研究银纳米粒子表面上吸附的分子的相对快速的光化学反应非常有用。

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