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Spectroscopic characterization of C2Hx intermediates in the dissociation of vinyl iodide on Pt(111)

机译:碘化物在Pt(111)上解离时C2Hx中间体的光谱表征

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The thermal decomposition of vinyl iodide on Pt(111) was studiedousing reflection absorption infrared spectroscopy (RATES). Some of the vinyl iodide molecularly desorbs at 160 K and the remainder decomposes via scission of the C-I bond to form vinyl. In this way, the vibrational signature of vinyl on Pt(111) is directly determined by RAIRS. At 190 K, vinyl starts to convert to di-sigma bonded ethylene. The ethylene undergoes further reaction at 230 K to hydrogenate to ethylidene, possibly by way of a vinyl intermediate. Upon annealing the surface to 300K, ethylidene is converted to ethylidyne. Hydrogen pre-adsorption promotes the cleavage of the C-I bond of vinyl iodide and the formation of vinyl, which subsequently leads to an increase in the amount of di-sigma bonded ethylene formed. The surface hydrogen enhances the formation of ethylidyne, possibly by removal of excess ethylidene by hydrogenation, as ethylidene was not observed when hydrogen was pre-adsorbed on the surface. (C) 2015 Elsevier B.V. All rights reserved.
机译:利用反射吸收红外光谱法研究了碘化乙烯在Pt(111)上的热分解。一些乙烯基碘化物在160 K时发生分子脱附,其余的则通过C-1键的断裂而分解形成乙烯基。这样,乙烯基在Pt(111)上的振动信号直接由RAIRS确定。在190 K时,乙烯基开始转化为二西格玛键合的乙烯。乙烯可能会通过乙烯基中间体在230 K下进行进一步反应,以氢化成亚乙基。将表面退火至300K后,亚乙基转化为亚乙炔。氢的预吸附促进碘乙烯的C-1键的裂解和乙烯基的形成,其随后导致形成的二西格玛键合的乙烯的量增加。表面氢可能通过氢化除去过量的亚乙基来增强亚乙炔的形成,因为当氢被预吸附在表面上时未观察到亚乙基。 (C)2015 Elsevier B.V.保留所有权利。

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