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晶体的化学键和非线性光学效应
引用本文:薛冬峰,Zhang Siyuan.晶体的化学键和非线性光学效应[J].上海大学学报(英文版),1999,3(2):172-174.
作者姓名:薛冬峰  Zhang Siyuan
作者单位:Changchun Institute of Applied Chemistry, Chinese Academy of Science  
基金项目:the Scientific Center of Changchun Applied Chemistry,山东大学校科研和教改项目 
摘    要:Physical properties of a crystal are related to its constituent chemical bonds,which show the interaction of all constituent atoms. Chemical bonding behaviors and bond parameters of a crystal are the important indices that can reasonably express this kind of interaction. Therefore, studying constituent chemical bonds of a crystal is a fundamental method to understand its structure-property relationships, it also would be potentially applicable to the predictions of properties of new crystals and the designing of new type of functional crystal materials. In my doctoral dissertation, starting from the constituent chemical bonds of crystals and using the structure-nonlinear optical (NLO) property relationship as a useful guide, the author carried out basic researches toward the goal of materials designing i.e.crystal engineering.

收稿时间:19 July 1998

Chemical bond and nonlinear optical effects of crystals
Dongfeng Xue Ph. D.,Prof. Zhang Siyuan.Chemical bond and nonlinear optical effects of crystals[J].Journal of Shanghai University(English Edition),1999,3(2):172-174.
Authors:Dongfeng Xue Ph D  Prof Zhang Siyuan
Institution:Changchun Institute of Applied Chemistry, Chinese Academy of Science
Abstract:Physical properties of a crystal are related to its constituent chemical bonds,which show the interaction of all constituent atoms. Chemical bonding behaviors and bond parameters of a crystal are the important indices that can reasonably express this kind of interaction. Therefore, studying constituent chemical bonds of a crystal is a fundamental method to understand its structure-property relationships, it also would be potentially applicable to the predictions of properties of new crystals and the designing of new type of functional crystal materials. In my doctoral dissertation, starting from the constituent chemical bonds of crystals and using the structure-nonlinear optical (NLO) property relationship as a useful guide, the author carried out basic researches toward the goal of materials designing i.e.crystal engineering.
Keywords:nonlinear optical (NLO) crystal materials  chemical bond theory  complex crystals  nonlinear optical coefficient  electro-optic coefficient  crystal engineering
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