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表面上的超分子组装体:纳米图案化、功能性及反应活性

Supramolecular Assemblies on Surfaces: Nanopatterning, Functionality, and Reactivity.

作者信息

Goronzy Dominic P, Ebrahimi Maryam, Rosei Federico, Fang Yuan, De Feyter Steven, Tait Steven L, Wang Chen, Beton Peter H, Wee Andrew T S, Weiss Paul S, Perepichka Dmitrii F

机构信息

California NanoSystems Institute , University of California, Los Angeles , Los Angeles , California 90095 , United States.

Department of Chemistry and Biochemistry , University of California, Los Angeles , Los Angeles , California 90095 , United States.

出版信息

ACS Nano. 2018 Aug 28;12(8):7445-7481. doi: 10.1021/acsnano.8b03513. Epub 2018 Jul 16.

Abstract

Understanding how molecules interact to form large-scale hierarchical structures on surfaces holds promise for building designer nanoscale constructs with defined chemical and physical properties. Here, we describe early advances in this field and highlight upcoming opportunities and challenges. Both direct intermolecular interactions and those that are mediated by coordinated metal centers or substrates are discussed. These interactions can be additive, but they can also interfere with each other, leading to new assemblies in which electrical potentials vary at distances much larger than those of typical chemical interactions. Earlier spectroscopic and surface measurements have provided partial information on such interfacial effects. In the interim, scanning probe microscopies have assumed defining roles in the field of molecular organization on surfaces, delivering deeper understanding of interactions, structures, and local potentials. Self-assembly is a key strategy to form extended structures on surfaces, advancing nanolithography into the chemical dimension and providing simultaneous control at multiple scales. In parallel, the emergence of graphene and the resulting impetus to explore 2D materials have broadened the field, as surface-confined reactions of molecular building blocks provide access to such materials as 2D polymers and graphene nanoribbons. In this Review, we describe recent advances and point out promising directions that will lead to even greater and more robust capabilities to exploit designer surfaces.

摘要

了解分子如何相互作用以在表面形成大规模分层结构,有望构建具有特定化学和物理性质的定制纳米级结构。在此,我们描述该领域的早期进展,并强调即将到来的机遇和挑战。我们将讨论直接的分子间相互作用以及由配位金属中心或底物介导的相互作用。这些相互作用可以是累加的,但也可能相互干扰,从而导致形成新的组装体,其中电势在比典型化学相互作用距离大得多的距离处发生变化。早期的光谱学和表面测量已经提供了关于此类界面效应的部分信息。在此期间,扫描探针显微镜在表面分子组织领域发挥了决定性作用,使人们对相互作用、结构和局部电势有了更深入的了解。自组装是在表面形成扩展结构的关键策略,将纳米光刻推进到化学维度,并在多个尺度上提供同步控制。与此同时,石墨烯的出现以及由此产生的探索二维材料的动力拓宽了该领域,因为分子构建块的表面受限反应为二维聚合物和石墨烯纳米带等材料的制备提供了途径。在本综述中,我们描述了最近的进展,并指出了有前景的方向,这些方向将带来更强大的能力来开发定制表面。

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