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Adsorption and Self-Assembly of Large Polycyclic Molecules on the Surfaces of TiO2 Single Crystals

机译:大型多环分子在TiO2单晶表面上的吸附和自组装

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摘要

Titanium dioxide is one of the most frequently studied metal oxides, and its (110) rutile surface serves as a prototypical model for the surface science of such materials. Recent studies have also shown that the (011) surface is relatively easy for preparation in ultra-high vacuum (UHV) and that both the (110) and (011) surfaces could be precisely characterized using scanning tunneling microscopy (STM). The supramolecular self-assembly of organic molecules on the surfaces of titanium dioxide plays an important role in nanofabrication, and it can control the formation and properties of nanostructures, leading to wide range of applications covering the fields of catalysis, coatings and fabrication of sensors and extends to the optoelectronic industry and medical usage. Although the majority of experiments and theoretical calculations are focused on the adsorption of relatively small organic species, in recent years, there has been increasing interest in the properties of larger molecules that have several aromatic rings in which functional units could also be observed. The purpose of this review is to summarize the achievements in the study of single polycyclic molecules and thin layers adsorbed onto the surfaces of single crystalline titanium dioxide over the past decade.
机译:二氧化钛是最常研究的金属氧化物之一,其(110)金红石表面可作为此类材料表面科学的原型模型。最近的研究还表明(011)表面在超高真空(UHV)中相对容易制备,并且(110)和(011)表面均可使用扫描隧道显微镜(STM)精确表征。二氧化钛表面上有机分子的超分子自组装在纳米制造中起着重要作用,它可以控制纳米结构的形成和性质,从而导致广泛的应用领域,涵盖了催化,涂层和传感器制造领域。扩展到光电工业和医疗用途。尽管大多数实验和理论计算都集中在相对较小的有机物的吸附上,但近年来,人们对具有多个芳香环的较大分子的性质越来越感兴趣,在该芳香环中也可以观察到功能单元。这篇综述的目的是总结过去十年来在单多环分子和吸附到单晶二氧化钛表面上的薄层研究中取得的成就。

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