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异丙醇-水配合液的荧光偏振和时间分辨特性
引用本文:韩彩芹,段培同,吴斌,刘莹,骆晓森,倪晓武.异丙醇-水配合液的荧光偏振和时间分辨特性[J].发光学报,2011,32(12):1303-1307.
作者姓名:韩彩芹  段培同  吴斌  刘莹  骆晓森  倪晓武
作者单位:1. 南京理工大学 理学院, 江苏 南京 210094; 2. 徐州师范大学 物理与电子工程学院, 江苏 徐州 221116
基金项目:国家自然科学基金(60878023);江苏省高校优势学科建设工程资助项目
摘    要:研究了紫外光照射下异丙醇-水配合液的偏振荧光光谱,以及不同荧光峰处光子强度随时间的衰变过程,计算了偏振度并讨论了其偏振特性,测试了不同峰位对应的荧光寿命并分析了其荧光发射特性.结果表明,异丙醇-水配合液在紫外光激励下发射的荧光为具有确定分子取向的部分偏振光,偏振度和各向异性度分别为0.542和0.441.在波长为220...

关 键 词:偏振光谱  时间分辨  荧光寿命  异丙醇-水配合液
收稿时间:2011-09-03

Fluorescence Polarization and Time Resolved Characteristics of Isopropanol-water Mixture
HAN Cai-qin,DUAN Pei-tong,WU Bin,LIU Ying,LUO Xiao-sen,NI Xiao-wu.Fluorescence Polarization and Time Resolved Characteristics of Isopropanol-water Mixture[J].Chinese Journal of Luminescence,2011,32(12):1303-1307.
Authors:HAN Cai-qin  DUAN Pei-tong  WU Bin  LIU Ying  LUO Xiao-sen  NI Xiao-wu
Institution:1. School of Science, Nanjing University of Science & Technology, Nanjing 210094, China; 2. School of Physics & Electronic Engineering, Xuzhou Normal University, Xuzhou 221116, China
Abstract:The polarization fluorescence spectra of isopropanol-water mixture excited by ultraviolet light was studied experimentally. The decay process of fluorescence intensity was detected at different center emission peaks. The curve was fitted by an exponential function and the processing data was obtained by deconvolution. Both the polarization degree and fluorescence lifetime were calculated, and mathematical characterization was performed for the fluorescence counts decay curves. The fluorescence emission and polarization characteristics were discussed. It is found that the isopropanol-water mixture excited by ultraviolet light obtains partially polarized fluorescence with certain molecular orientation. The polarization degree and anisotropy degree are 0.542 and 0.441, respectively. Induced by exciting light with wavelengths of 220 nm and 232 nm, the fluorescence lifetime of isopropanol-water mixture at peaks of 277, 284, 293,309 nm is about 17 ns. While the average fluorescence lifetime at peaks of 328 nm, 345 nm and 362 nm is around 21, 22, 16 ns, respectively. It is related with the molecular cluster structure relative stability of isopropanol-water mixture by the action of hydrogen bond. The research will contribute to the study of the molecular characteristic of isopropanol-water cluster.
Keywords:polarization spectrum  time resolved  fluorescence lifetime  isopropanol-water mixture
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