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二阶非线性光学树枝状大分子和树枝状超支化聚合物。

Second-Order Nonlinear Optical Dendrimers and Dendronized Hyperbranched Polymers.

作者信息

Tang Runli, Li Zhen

机构信息

Hubei Key Lab on Organic and Polymeric Optoelectronic Materials, Department of Chemistry, Wuhan University, Wuhan, 430072, P.R. China.

出版信息

Chem Rec. 2017 Jan;17(1):71-89. doi: 10.1002/tcr.201600065. Epub 2016 Jul 26.

Abstract

Second-order nonlinear optical (NLO) dendrimers with a special topological structure were regarded as the most promising candidates for practical applications in the field of optoelectronic materials. Dendronized hyperbranched polymers (DHPs), a new type of polymers with dendritic structures, proposed and named by us recently, demonstrated interesting properties and some advantages over other polymers. Some of our work concerning these two types of polymers are presented herein, especially focusing on the design idea and structure-property relationship. To enhance their comprehensive NLO performance, dendrimers were designed and synthesized by adjusting their isolation mode, increasing the number of the dendritic generation, modifying their topological structure, introducing isolation chromophores, and utilizing the Ar-Ar self-assembly effect. To make full use of the advantages of both the structural integrity of dendrimers and the convenient one-pot synthesis of hyperbranched polymers, DHPs were explored by utilizing low-generation dendrons as big monomers to construct hyperbranched polymers. These selected works could provide valuable information to deeply understand the relationship between the structure and properties of functional polymers with dendritic structures, but not only limited to the NLO ones, and might contribute much to the further development of functional polymers with rational design.

摘要

具有特殊拓扑结构的二阶非线性光学(NLO)树枝状大分子被视为光电材料领域实际应用中最有前景的候选者。树枝状支化聚合物(DHP)是我们最近提出并命名的一种新型具有树枝状结构的聚合物,它展现出有趣的性质以及相较于其他聚合物的一些优势。本文展示了我们关于这两类聚合物的一些工作,尤其着重于设计理念和结构-性能关系。为了提高它们的综合NLO性能,通过调整隔离模式、增加树枝状代数、修饰拓扑结构、引入隔离发色团以及利用Ar-Ar自组装效应来设计和合成树枝状大分子。为了充分利用树枝状大分子结构完整性和超支化聚合物便捷的一锅法合成的优势,通过利用低代数树枝状支化物作为大单体来构建超支化聚合物,从而对DHP进行了探索。这些选定的工作能够提供有价值的信息,以深入理解具有树枝状结构的功能聚合物的结构与性能之间的关系,而不仅限于NLO功能聚合物,并且可能对合理设计功能聚合物的进一步发展有很大贡献。

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