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Tert-butyl nitrite surface photochemistry: The transition from submonolayer to multilayer behavior

机译:亚硝酸叔丁酯表面光化学:从亚单层到多层行为的转变

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The photochemistry of tert-butyl nitrite, (CH3)(3)CONO, adsorbed on Ag(111) at 355 nm has been studied using time-of-flight and reflection adsorption infrared spectroscopy (RAIRS) for coverages ranging from 0.1 to 50 ML. For all coverages a thermal and hyperthermal NO desorption distribution is observed due to photodissociation. The thermal component originates from hyperthermal NO molecules from the first and second layer, which were trapped by the silver substrate. The cross section for photodissociation is independent of coverage and matches the gas phase value. This is consistent with a direct excitation into the S-1 state, For coverages exceeding 5 ML the outermost layers still dissociate, but RAIRS shows that in the more inward layers caging is preventing dissociation, Due to caging only isomerization of tert-butyl nitrite is allowed, as is evident from the RAIRS. (C) 1998 American Institute of Physics. [S0021-9606(98)01104-0]. [References: 59]
机译:使用飞行时间和反射吸附红外光谱(RAIRS)研究了亚硝酸叔丁酯(CH3)(3)CONO在355 nm处吸附在Ag(111)上的光化学性质,覆盖范围为0.1至50 ML 。对于所有覆盖,由于光解离,观察到热和高温NO的解吸分布。热成分源自第一和第二层的高温NO分子,它们被银基底捕获。光解离的横截面与覆盖率无关,并且与气相值匹配。这与直接激发进入S-1状态是一致的。对于超过5 ML的覆盖范围,最外层仍会解离,但RAIRS显示,在更向内的层中,笼统阻止了解离,由于只有笼统的亚硝酸叔丁酯异构化了从RAIRS可以明显看出。 (C)1998美国物理研究所。 [S0021-9606(98)01104-0]。 [参考:59]

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