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Sol—gel法制备WO3电致变色薄膜
引用本文:杨秋红,顾莹.Sol—gel法制备WO3电致变色薄膜[J].上海大学学报(自然科学版),1997,3(3):313-318.
作者姓名:杨秋红  顾莹
作者单位:上海大学材料科学与工程学院无机材料系
摘    要:本文采用Sol-gel法,用Na2WO4水溶液经质子交换树脂获得WO3溶胶,用浸涂法制备无色透明非晶WO3薄膜。WO3非晶薄膜显微结构疏松,表面有微裂纹,是良好的快离子导体,加负电压使其注入Li^+离子引起钨离子还原而着色。经500℃热处理后的WO3薄膜主要含斜方WO3晶相,显微结构致密,表面微裂纹闭合,不利于Li^+离子注入,几乎无变色现象。

关 键 词:电致变色  薄膜  氧化钨  凝胶溶胶法

Studies on Structure activity Relationship of 2 (4 Methylphenyl) 4 (substituted)phenyl 1,3,4 oxadiazin 5 one Derivatives by T.Kohonen Self organization Model
Lu Wencong,Chen Wei,Fang Jianhui,Ding Yiming,Yan Licheng.Studies on Structure activity Relationship of 2 (4 Methylphenyl) 4 (substituted)phenyl 1,3,4 oxadiazin 5 one Derivatives by T.Kohonen Self organization Model[J].Journal of Shanghai University(Natural Science),1997,3(3):313-318.
Authors:Lu Wencong  Chen Wei  Fang Jianhui  Ding Yiming  Yan Licheng
Abstract:In this paper, non linear relationship between the characteristic parameters and biological activities of a series of 2 (4 Methylphenyl) 4 (substituted) phenyl 1,3,4 oxadiazin 5 one derivatives was calculated by T.Kohonen self organization model. The results show that the performance of the neural network is good and the successful classification rate is high. Therefore, the model can be used as an effective auxiliary technique for the investigation of structure activity relationship of drugs.
Keywords:Methylphenyl)  4  (substituted)phenyl  1  3  4  oxadiazin  5  one derivatives  structure  activity relationship  artificial neural network  T  Kohonen self  organization model  
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