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首页> 外文期刊>Journal of Chemical Physics >X-ray absorption and photoemission spectroscopy of zinc protoporphyrin adsorbed on rutile TiO2(110) prepared by in situ electrospray deposition
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X-ray absorption and photoemission spectroscopy of zinc protoporphyrin adsorbed on rutile TiO2(110) prepared by in situ electrospray deposition

机译:原位电喷雾沉积法制备金红石型TiO2 (110)上锌原卟啉的X射线吸收和光发射光谱

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摘要

Zinc-protoporphyrin, adsorbed on the rutile TiO2(110) surface, has been studied using photoemission spectroscopy and near-edge absorption fine structure spectroscopy to deduce the nature of the molecule-surface bonding and the chemical environment of the central metal atom. To overcome the difficulties associated with sublimation of the porphyrin molecules, samples were prepared in situ using ultrahigh vacuum electrospray deposition, a technique which facilitates the deposition of nonvolatile and fragile molecules. Monolayers of Zn protoporphyrin are found to bond to the surface via the oxygen atoms of the deprotonated carboxyl groups. The molecules initially lie largely parallel to the surface, reorienting to an upright geometry as the coverage is increased up to a monolayer. For those molecules directly chemisorbed to the surface, the interaction is sufficiently strong to pull the central metal atom out of the molecule. © 2010 American Institute of Physics Article Outline INTRODUCTION METHODS RESULTS AND DISCUSSION CONCLUSIONS
机译:利用光发射光谱法和近边缘吸收精细结构光谱法研究了金红石型TiO2 (110)表面吸附的原卟啉锌的分子表面键合性质和中心金属的化学环境。原子。为了克服与卟啉分子升华相关的困难,使用超高真空电喷雾沉积法原位制备了样品,该技术可促进非挥发性和易碎分子的沉积。发现锌原卟啉单层通过去质子化的羧基的氧原子键合至表面。分子最初基本上与表面平行,当覆盖率增加到单层时重新定向为直立的几何形状。对于那些直接化学吸附到表面的分子,相互作用足够强,以将中心金属原子拉出分子。 ©2010美国物理研究所文章大纲引言方法结果与讨论结论

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