Bai Yaowen, Song Naiheng, Gao Jian Ping, Sun Xun, Wang Xiaomei, Yu Guomin, Wang Zhi Yuan
Department of Chemistry, Carleton University, 1125 Colonel By Drive, Ottawa, Ontario, K1S 5B6, Canada.
J Am Chem Soc. 2005 Feb 23;127(7):2060-1. doi: 10.1021/ja042854f.
A new, practical approach to a variety of highly electrooptically active polymers for device development is described. It involves the use of a new thermally cross-linkable, hyperbranched oligomer containing nonlinear optical (NLO) chromophores as a macromolecular dopant in a common host polymer. A series of NLO polymeric blends were readily formulated and showed large and stable electrooptic (EO) coefficients (up to 65 pm/V). In comparison with previously studied linear NLO polyimides and guest-host polymers doped with molecular chromophores and even linear NLO analogous oligomers, this new approach offers clear advantages for device development in terms of improved poling efficiency, larger EO coefficients, good temporal stability, and versatile material formulation.
描述了一种用于器件开发的多种高电光活性聚合物的新型实用方法。它涉及使用一种新型的热可交联超支化低聚物,该低聚物含有非线性光学(NLO)发色团,作为普通主体聚合物中的大分子掺杂剂。一系列NLO聚合物共混物易于配制,并显示出大且稳定的电光(EO)系数(高达65 pm/V)。与先前研究的线性NLO聚酰亚胺以及掺杂有分子发色团甚至线性NLO类似低聚物的客体-主体聚合物相比,这种新方法在提高极化效率、更大的EO系数、良好的时间稳定性和通用的材料配方方面为器件开发提供了明显的优势。