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有机晶体:性质、器件、功能化及与生物分子的连接。

Organic crystals: properties, devices, functionalization and bridges to bio-molecules.

机构信息

Physics Dept. and National High Magnetic Field Laboratory, 1800 East Paul Dirac Drive, Tallahassee, Florida, USA.

出版信息

Chem Soc Rev. 2010 Jul;39(7):2667-94. doi: 10.1039/b913417b. Epub 2010 May 26.

Abstract

The purpose of this critical review is twofold: first, to review organic "small molecule" crystalline materials in terms of structure and function; and second, to consider if and how such materials might eventually enter the realm of device applicability. This area, one of the most interdisciplinary fields of research in contemporary materials science, embraces chemistry, physics, engineering, biology, theory and computation. The review therefore attempts to treat a relatively large number of examples including fundamental physical and electronic structure, single component and charge transfer complexes, physical properties of single crystalline materials, thin film and single crystal electronic and photonic devices, functional materials, and bio-inspired structures. The point of view is that of an experimental physicist, and in this context, challenges and possible routes to further advances in the development and utilization of organic small molecule materials are discussed for both fundamental and applied purposes (153 references).

摘要

本次批判性评论有两个目的

首先,根据结构和功能来回顾有机“小分子”晶体材料;其次,考虑这些材料是否以及如何最终进入器件适用性领域。这一领域是当代材料科学中最具跨学科研究的领域之一,涵盖了化学、物理、工程、生物、理论和计算。因此,本评论试图处理相对较多的实例,包括基本物理和电子结构、单一成分和电荷转移配合物、单晶材料的物理性质、薄膜和单晶电子和光子器件、功能材料以及受生物启发的结构。评论的观点是实验物理学家的观点,在这种情况下,将讨论为基础研究和应用目的进一步开发和利用有机小分子材料的挑战和可能途径(引用 153 篇)。

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