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金属表面的分子构造

Molecular architectonic on metal surfaces.

作者信息

Barth Johannes V

机构信息

Department of Chemistry, The University of British Columbia, Vancouver B.C. V6T 1Z4, Canada.

出版信息

Annu Rev Phys Chem. 2007;58:375-407. doi: 10.1146/annurev.physchem.56.092503.141259.

Abstract

The engineering of highly organized systems from instructed molecular building blocks opens up new vistas for the control of matter and the exploration of nanodevice concepts. Recent investigations demonstrate that well-defined surfaces provide versatile platforms for steering and monitoring the assembly of molecular nanoarchitectures in exquisite detail. This review delineates the principles of noncovalent synthesis on metal substrates under ultrahigh vacuum conditions and briefly assesses the pertaining terminology-self-assembly, self-organization, and self-organized growth. It presents exemplary scanning-tunneling-microscopy observations, providing atomistic insight into the self-assembly of organic clusters, chains, and superlattices, and the metal-directed assembly of low-dimensional coordination architectures. This review also describes hierarchic-assembly protocols leading to intricate multilevel order. Molecular architectonic on metal surfaces represents a versatile rationale to realize structurally complex nanosystems with specific shape, composition, and functional properties, which bear promise for technological applications.

摘要

利用有指导作用的分子构建块构建高度有序的系统,为物质控制和纳米器件概念探索开辟了新视野。最近的研究表明,定义明确的表面为精细地引导和监测分子纳米结构的组装提供了多功能平台。本综述阐述了在超高真空条件下金属基底上非共价合成的原理,并简要评估了相关术语——自组装、自组织和自组织生长。文中展示了示例性的扫描隧道显微镜观察结果,提供了关于有机簇、链和超晶格自组装以及低维配位结构的金属导向组装的原子层面见解。本综述还描述了导致复杂多级有序结构的分层组装方案。金属表面的分子构筑学是实现具有特定形状、组成和功能特性的结构复杂纳米系统的通用原理,有望应用于技术领域。

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