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从动态库中金属氧化物构建块的连接到具有独特性质的巨型簇,再到自适应化学。

From linking of metal-oxide building blocks in a dynamic library to giant clusters with unique properties and towards adaptive chemistry.

机构信息

Fakultät für Chemie der Universität, Anorganische Chemie I, Postfach 100131, 33501 Bielefeld, Germany.

出版信息

Chem Soc Rev. 2012 Nov 21;41(22):7431-63. doi: 10.1039/c2cs35169b. Epub 2012 Sep 5.

Abstract

Following Nature's lessons, today chemists can cross the boundary of the small molecule world to construct multifunctional and highly complex molecular nano-objects up to protein size and even cell-like nanosystems showing responsive sensing. Impressive examples emerge from studies of the solutions of some oxoanions of the early transition metals especially under reducing conditions which enable the controlled linking of metal-oxide building blocks. The latter are available from constitutional dynamic libraries, thus providing the option to generate multifunctional unique nanoscale molecular systems with exquisite architectures, which even opens the way towards adaptive and evolutive (Darwinian) chemistry. The present review presents the first comprehensive report of current knowledge (including synthesis aspects not discussed before) regarding the related giant metal-oxide clusters mainly of the type {Mo(57)M'(6)} (M' = Fe(III), V(IV)) (torus structure), {M(72)M'(30)} (M = Mo, M' = V(IV), Cr(III), Fe(III), Mo(V)), {M(72)Mo(60)} (M = Mo, W) (Keplerates), {Mo(154)}, {Mo(176)}, {Mo(248)} ("big wheels"), and {Mo(368)} ("blue lemon") - all having the important transferable pentagonal {(M)M(5)} groups in common. These discoveries expanded the frontiers of inorganic chemistry to the mesoscopic world, while there is probably no collection of discrete inorganic compounds which offers such a versatile chemistry and the option to study new phenomena of interdisciplinary interest. The variety of different properties of the sphere- and wheel-type metal-oxide-based clusters can directly be related to their unique architectures: The spherical Keplerate-type capsules having 20 crown-ether-type pores and tunable internal functionalities allow the investigation of confined matter as well as that of sphere-surface-supramolecular and encapsulation chemistry - including related new aspects of the biologically important hydrophobic effects - but also of nanoscale ion transport and separation. The wheel-type molybdenum-oxide clusters exhibiting complex landscapes do not only have well-defined reaction sites but also show unprecedented adaptability regarding the integration of various kinds of matter. Applications in different fields, e.g. in materials science and catalysis including those in small spaces, investigated by several groups, are discussed while possible directions for future work are outlined.

摘要

受自然启发,当今化学家能够跨越小分子世界的界限,构建多功能和高度复杂的分子纳米物体,其尺寸可达蛋白质大小,甚至可以构建类似细胞的纳米系统,从而实现响应性传感。在某些过渡金属的氧阴离子溶液的研究中,出现了令人印象深刻的例子,尤其是在还原条件下,这使得能够控制金属-氧化物构建块的连接。后者可从结构动态库中获得,从而为生成具有精致结构的多功能独特纳米级分子系统提供了选择,甚至为适应性和进化(达尔文式)化学开辟了道路。本综述首次全面报告了当前关于相关巨型金属氧化物簇的知识(包括以前未讨论过的合成方面),主要涉及{Mo(57)M'(6)}(M'=Fe(III),V(IV))(环面结构)、{M(72)M'(30)}(M=Mo,M'=V(IV),Cr(III),Fe(III),Mo(V))、{M(72)Mo(60)}(M=Mo,W)(开普勒体)、{Mo(154)}、{Mo(176)}、{Mo(248)}(“大车轮”)和{Mo(368)}(“蓝柠檬”)等类型的主要具有重要可转移的五角形{(M)M(5)}基团的巨量金属氧化物簇。这些发现将无机化学的前沿扩展到介观世界,而可能没有任何离散无机化合物的集合能够提供如此多样的化学和研究跨学科感兴趣的新现象的选择。基于金属氧化物的球型和轮型簇的不同性质可以直接与其独特的结构相关联:具有 20 个冠醚型孔和可调内部功能的球形开普勒体胶囊允许研究受限物质以及球体-表面-超分子和封装化学 - 包括生物重要疏水性相关的新方面 - 还包括纳米级离子传输和分离。具有复杂景观的轮型钼氧化物簇不仅具有明确的反应位点,而且在整合各种物质方面表现出前所未有的适应性。讨论了不同领域的应用,例如由几个小组研究的材料科学和催化包括小空间中的应用,同时概述了未来工作的可能方向。

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