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表面上的超分子[60]富勒烯化学。

Supramolecular [60]fullerene chemistry on surfaces.

作者信息

Bonifazi Davide, Enger Olivier, Diederich François

机构信息

Dipartimento di Scienze Farmaceutiche and INSTM UdR Trieste, Università degli Studi di Trieste, 34127 Trieste, Italy.

出版信息

Chem Soc Rev. 2007 Feb;36(2):390-414. doi: 10.1039/b604308a. Epub 2006 Dec 19.

Abstract

This critical review documents the exceptional range of research avenues in [60]fullerene-based monolayers showing unique and spectacular physicochemical properties which prompted such materials to have potential applications in several directions, ranging from sensors and photovoltaic cells to nanostructured devices for advanced electronic applications, that have been pursued during the past decade. It illustrates how progress in covalent [60]fullerene functionalisation led to the development of spectacular surface-immobilised architectures, including dyads and triads for photoinduced electron and energy transfer, self-assembled on a wide variety of surfaces. All of these molecular assemblies and supramolecular arrays feature distinct properties as a consequence of the presence of different molecular units and their spatial arrangement. Since the properties of [60]fullerene-containing films are profoundly controlled by the deposition conditions, substrate of adsorption, and influenced by impurities or disordered surface structures, the progress of such new [60]fullerene-based materials strongly relies on the development of new versatile and broad preparative methodologies. Therefore, the systematic exploration of the most common approaches to prepare and characterise [60]fullerene-containing monolayers embedded into two- or three-dimensional networks will be reviewed in great detail together with their main limitations. Recent investigations hinting at potential technological applications addressing many important fundamental issues, such as a better understanding of interfacial electron transfer, ion transport in thin films, photovoltaic devices and the dynamics associated with monolayer self-assembly, are also highlighted.

摘要

这篇批判性综述记录了基于[60]富勒烯的单分子层中异常广泛的研究途径,这些单分子层展现出独特且引人注目的物理化学性质,促使此类材料在多个方向具有潜在应用,从传感器和光伏电池到用于先进电子应用的纳米结构器件,在过去十年中人们一直在探索这些应用。它阐述了共价[60]富勒烯功能化的进展如何导致了引人注目的表面固定架构的发展,包括用于光诱导电子和能量转移的二元体和三元体,它们在各种各样的表面上自组装。由于存在不同的分子单元及其空间排列,所有这些分子组装体和超分子阵列都具有独特的性质。由于含[60]富勒烯薄膜的性质受到沉积条件、吸附底物的深刻控制,并受到杂质或无序表面结构的影响,此类新型基于[60]富勒烯的材料的进展强烈依赖于新型通用且广泛的制备方法的发展。因此,将详细综述制备和表征嵌入二维或三维网络中的含[60]富勒烯单分子层的最常见方法及其主要局限性。还将重点介绍近期暗示潜在技术应用的研究,这些应用解决了许多重要的基本问题,例如对界面电子转移、薄膜中的离子传输、光伏器件以及与单分子层自组装相关的动力学有更好的理解。

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