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The Effect of Visible-light on the UV-Polymerization of 10,12-Pentacosadiynoic Acid Monolayers
Zhou Huilin,Lu Weixing,He Pingsheng
Author NameAffiliation
Zhou Huilin Department of Polymer Science and Engineering,University of Science and Technology of China,Hefei 230026 
Lu Weixing Department of Polymer Science and Engineering,University of Science and Technology of China,Hefei 230026 
He Pingsheng Department of Polymer Science and Engineering,University of Science and Technology of China,Hefei 230026 
Abstract:
This paper measured the π-Aisotherms of the monomer and polymerized 10,12-pentacosadiynoic acid(PDA).If defining A0 as the surface pressure onset(the area at which an appreciable rise in surface pressure was observed),the A0 are 0.35 and 0.48nm2/mol,the collapse pressure are 51 and 38mN/m and the molecule area at collapse point are 0.2 and 0.28nm2/mol for PDA monomer and polymer respectively.The chain segment of PDA polymer occupied more area than the corresponding monomer.So expansion could be expected in the polymerization reaction.The PDA molecule area changes during polymerization at the surface pressure of 10mN/m was recorded.It was obvious an expansion process.The UV-visible absorption and emission spectroscopy of the polymerized products were measured.The 500 and 550nm absorption peak indicated that the polymerization was really occurred in the monolayer state.The acceleration effect of visible-light on the monolayer UV-polymerization was investigated by periodically switch on and off the visible-light under constant UV-irradiation.The barrier speed at the visible-irradiation periods was larger than that at the no-visible-irradiation periods.This indicated that the visible-light can truly accelerate the UV-polymerization of PDA monolayer.Because the visible-light itself can not initiate the polymerization without UV-irradiation,it can be concluded that the visible-light can only accelerated the chain propagation process,thus can produce larger molecule weight polymer.The acceleration effect was explained with the polymerization mechanism and the electronic state of the polymerization intermediates.
Key words:  10,12-pentacosadiynoic acid,LB technique,Topochemical polymerization
FundProject:国家自然科学基金资助课题(29674027)
可见光对双炔酸Langmuir膜UV聚合的影响
周慧琳,吕卫星,何平笙
摘要:
测量了10,12-二炔廿五碳酸单体及其聚合物的π-A曲线,Langmuir膜在10mN/m膜压10,12-二炔廿五碳酸下的紫外光聚合的分子占据面积曲线,可见光对Langmuir膜聚合的加速行为以及该聚合物的紫外可见光谱。并从聚合机理和反应中间体的电子态等角度对可见光在链增长中的作用加以讨论。
关键词:  10,12-二炔廿五碳酸  LB膜技术  拓扑聚合  Langmuir膜
DOI:10.1088/1674-0068/13/1/118-122
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