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首页> 外文期刊>Angewandte Chemie >Modeling the Remote-Controlled Organization of Particles in a Nanodimensional Cavity: Synthesis and Properties of (Et_3NH)_3(tBuNH_3)_(2~--) Na_2[(H)20)_2,N_3~- V_(14)0_(22)(OH)_4(PhP0_3)_8] - 6H_2O-2 DMF
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Modeling the Remote-Controlled Organization of Particles in a Nanodimensional Cavity: Synthesis and Properties of (Et_3NH)_3(tBuNH_3)_(2~--) Na_2[(H)20)_2,N_3~- V_(14)0_(22)(OH)_4(PhP0_3)_8] - 6H_2O-2 DMF

机译:在纳米腔中建模粒子的远程控制组织:(Et_3NH)_3(tBuNH_3)_(2〜-)Na_2 [(H)20)_2,N_3〜-V_(14)0 _的合成和性质(22)(OH)_4(PhP0_3)_8]-6H_2O-2 DMF

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摘要

One of the most important aspects for the future of chemical research is the examination of the experimental conditions under which it is possible to construct arrangements of higher complexity from simple building blocks, if possible, with tailor-made structural and functionality features. The aim of such experiments is not only to improve the understanding of the extreme complexity of natural processes, but also to synthesize molecular materials with desired properties. In this context, reactions in which the organization of weakly interacting species in an isolated system are influenced "from outside" are of interest, too. These problems are current topics in the field of supramolecular chemistry.
机译:化学研究的未来最重要的方面之一是对实验条件的检查,在这种条件下,可以使用简单的构建块(如果可能)使用量身定制的结构和功能特征来构建更高复杂性的排列。此类实验的目的不仅在于增进对自然过程极端复杂性的理解,而且还在于合成具有所需特性的分子材料。在这种情况下,“隔离系统”中弱相互作用物种的组织受到“外部影响”的反应也很有趣。这些问题是超分子化学领域中的当前主题。

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