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聚合物结构在过渡金属和金属氧化物纳米颗粒复合材料催化中的作用

Role of Polymer Structures in Catalysis by Transition Metal and Metal Oxide Nanoparticle Composites.

作者信息

Shifrina Zinaida B, Matveeva Valentina G, Bronstein Lyudmila M

机构信息

A.N. Nesmeyanov Institute of Organoelement Compounds , Russian Academy of Sciences , 28 Vavilov St , Moscow , 119991 Russia.

Tver State Technical University , Department of Biotechnology and Chemistry , 22 A. Nikitina St , 170026 Tver , Russia.

出版信息

Chem Rev. 2020 Jan 22;120(2):1350-1396. doi: 10.1021/acs.chemrev.9b00137. Epub 2019 Jun 4.

Abstract

Nanoparticle (NP)/polymer nanocomposites received considerable attention because of their important applications including catalysis. Metal and metal oxide NPs may impart catalytic properties to polymer nanocomposites, while polymers with a different structure, functionality, and architecture control the NP formation (size, shape, location, composition, etc.) and in this way, govern catalytic properties of nanocomposites. In this review we will discuss the influence of the polymer nanostructure (thin or grafted layers, polymer ordering, polymer nanopores), architecture (branched vs linear), functional groups (coordinating or ionic), specific properties (reducing, stimuli responsive, conductive), etc. on the formation of metal or metal oxide NPs and the catalytic behavior of the nanocomposites. The development of novel and efficient catalysts is crucial for progress in chemical sciences, and this explains a huge number of publications in this area in recent years. Taking into consideration previous review articles on NP/polymer catalysts, we limited this review to a discussion of a narrow temporal scope (2017-April 2019), while embracing a broad subject scope, i.e., considering any polymers and NPs which form catalytic nanocomposites. This gives us a unique view of the field of catalytic polymer nanocomposites and allows understanding of where the field is going.

摘要

纳米颗粒(NP)/聚合物纳米复合材料因其在包括催化在内的重要应用而备受关注。金属和金属氧化物纳米颗粒可赋予聚合物纳米复合材料催化性能,而具有不同结构、功能和架构的聚合物则控制纳米颗粒的形成(尺寸、形状、位置、组成等),并以此方式决定纳米复合材料的催化性能。在本综述中,我们将讨论聚合物纳米结构(薄层或接枝层、聚合物有序性、聚合物纳米孔)、架构(支化与线性)、官能团(配位或离子型)、特定性能(还原性、刺激响应性、导电性)等对金属或金属氧化物纳米颗粒形成以及纳米复合材料催化行为的影响。新型高效催化剂的开发对化学科学的进步至关重要,这也解释了近年来该领域大量的出版物。考虑到之前关于NP/聚合物催化剂的综述文章,我们将本综述限定在一个狭窄的时间范围内(2017年 - 2019年4月)进行讨论,同时涵盖广泛的主题范围,即考虑任何形成催化纳米复合材料的聚合物和纳米颗粒。这使我们对催化聚合物纳米复合材料领域有独特的见解,并有助于理解该领域的发展方向。

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