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作 者:Yuanyuan Liu Qiuchen Peng Yuanyuan Li Hongwei Hou Kai Li
机构地区:[1]Green Catalysis Center,College of Chemistry,Zhengzhou University,Zhengzhou 450001,China [2]School of Chemistry and Chemical Engineering,Henan University of Techmology,Zhengzhou 450001,China
出 处:《Chinese Chemical Letters》2020年第12期3271-3275,共5页中国化学快报(英文版)
基 金:the National Natural Science Foundation of China(Nos.U1904172,21501150,51502079 and 21671174);Key Scientific and Technological Project of Henan Province(No.202102310006)。
摘 要:As a potential photochromic system,acylhydrazones exhibit many outstanding adva ntages including low cost,simple synthesis and high modifiability compared with some classic photochromic systems.However,the absorption wavelengths of acylhydrazones usually locate in ultraviolet regio n,which makes the band separation between the absorbance maxima of its irradiated and unirradiated forms cannot be observed by naked eyes and greatly limits their practical applications.In this work,a simple strategy for constructing acylhydrazone photochromic system with visible color/emission change is provided.Rhodamine 6 G hydrazine-2-aldehyde-pyridine Schiff base(compound 3)is designed and synthesized by combining acylhydrazone with Rhodamine 6 G structure.The introduction of Rhodamine 6 G moiety to 3 not only makes it remain all the advantages of acylhydrazone photochromic system but also exhibits visible photo-induced color/emission changes both in solution and in a solid matrix.Moreover,3 exhibits reversible photochromic property with good fatigue re sistance,which makes it an excellent candidate for p hoto-patterning.
关 键 词:PHOTOCHROMISM ACYLHYDRAZONE Rhodamine6G E/Z isomerization Photo-patternin
分 类 号:TB34[一般工业技术—材料科学与工程]
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