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Coordination chemistry with phosphorus dendrimers. Applications as catalysts, for materials, and in biology

机译:与磷树枝状化合物的配位化学。用作催化剂,材料和生物学的应用

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Dendrimers are hyperbranched macromolecules having a perfectly defined and multifunctionalized structure, constituted of branches emanating radially from a central core. The structure of dendrimers is particularly modular, and can incorporate in different parts coordination complexes. In this review, we will present the interplay between dendrimers and coordination chemistry in three main fields: catalysis, materials, and biology. Most of the examples will be taken from the work done with phosphorus-containing dendrimers, but the pioneering work carried out with other dendrimers will be also presented. One of the major improvements that metallodendrimers have afforded concerning catalysis is their easy recovery and reuse, bridging the gap between homogeneous and heterogeneous catalysis. Another major improvement concerns the "dendritic effect" which can afford impressive outcomes concerning the increase of yield and of enantioselectivity, together with a decrease of the leaching of metals, and consequently of waste. Dendrimers can be used also for the synthesis and stabilization of metallic nanoparticles, for the modification of metallic surfaces at the nanometric scale, and for the synthesis of mesoscopically ordered hybrid materials. Finally metallodendrimers have high potency against cancerous cell lines, and they appear to operate via a different mechanism of action compared with native metallodrugs, opening new avenues for the search of improved anti-cancer agents. (C) 2015 Elsevier B.V. All rights reserved.
机译:树枝状大分子是具有完美定义和多功能化结构的超支化大分子,由从中心核放射状的分支组成。树状聚合物的结构特别是模块化的,并且可以在不同的部分结合配位络合物。在这篇综述中,我们将介绍树枝状大分子与配位化学在三个主要领域之间的相互作用:催化,材料和生物学。大多数示例将取自使用含磷树枝状聚合物的工作,但还将介绍使用其他树枝状聚合物进行的开拓性工作。金属树枝状大分子在催化方面提供的主要改进之一是它们易于回收和再利用,弥合了均相和非均相催化之间的空白。另一个主要的改进涉及“树枝状效应”,该树枝状效应可提供令人印象深刻的结果,涉及产量和对映选择性的提高,以及金属浸出的减少以及废物的减少。树枝状聚合物也可用于金属纳米颗粒的合成和稳定化,纳米级金属表面的改性以及介观有序杂化材料的合成。最后,金属树状聚合物对癌细胞系具有高效力,并且与天然金属药物相比,它们似乎通过不同的作用机理起作用,为寻找改良的抗癌剂开辟了新途径。 (C)2015 Elsevier B.V.保留所有权利。

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