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一种共轭聚合物单分子发色团吸收和发射特性动态演变过程的实时测量
引用本文:石莹,李耀,周海涛,陈瑞云,张国峰,秦成兵,高岩,肖连团,贾锁堂.一种共轭聚合物单分子发色团吸收和发射特性动态演变过程的实时测量[J].物理学报,2019,68(4):48201-048201.
作者姓名:石莹  李耀  周海涛  陈瑞云  张国峰  秦成兵  高岩  肖连团  贾锁堂
作者单位:1. 山西大学激光光谱研究所, 量子光学与光量子器件国家重点实验室, 太原 030006; 2. 山西大学极端光学协同创新中心, 太原 030006
基金项目:国家重点研发计划(批准号:2017YFA0304203)、国家自然科学基金(批准号:61527824,11504216,61675119,11434007,61605104,U1510133)、教育部长江学者和创新团队发展计划(批准号:IRT13076)和山西省“1331工程”重点学科建设计划资助的课题.
摘    要:利用频域信息重构的散焦宽场成像测量了Poly2,7-(9,9-dioctylfluorene)-alt-4,7-bis(thiophen-2-yl)benzo-2,1,3-thiadiazole](PFO-DBT)共轭聚合物单分子发色团的吸收与发射特性及其动态演变过程.通过调制用于激发共轭聚合物单分子的超短脉冲对的相对相位,对单分子荧光进行傅里叶变换的频域测量,跟踪发色团吸收偶极取向变化;通过测量散焦荧光成像光斑探测发色团发射偶极取向变化.研究发现, PFO-DBT共轭聚合物单分子发色团存在吸收和发射偶极取向均保持不变、其中之一变化以及两者同时变化三种情况.这种对共轭聚合物单分子发色团吸收和发射偶极取向演化过程的实时测量可用于分析共轭聚合物构象变化及其对能量转移过程的影响.

关 键 词:共轭聚合物  单分子光谱  散焦成像  跃迁偶极取向
收稿时间:2018-11-07

Real-time measurement of dynamic evolution of absorption and emission properties of chromophores in single conjugated polymer molecules
Shi Ying,Li Yao,Zhou Hai-Tao,Chen Rui-Yun,Zhang Guo-Feng,Qin Cheng-Bing,Gao Yan,Xiao Lian-Tuan,Jia Suo-Tang.Real-time measurement of dynamic evolution of absorption and emission properties of chromophores in single conjugated polymer molecules[J].Acta Physica Sinica,2019,68(4):48201-048201.
Authors:Shi Ying  Li Yao  Zhou Hai-Tao  Chen Rui-Yun  Zhang Guo-Feng  Qin Cheng-Bing  Gao Yan  Xiao Lian-Tuan  Jia Suo-Tang
Institution:1. State Key Laboratory of Quantum Optics and Quantum Optics Devices, Institute of Laser Spectroscopy, Shanxi University, Taiyuan 030006, China; 2. Collaborative Innovation Center of Extreme Optics, Shanxi University, Taiyuan 030006, China
Abstract:Conjugated polymers have been widely used in optical sensors, light-emitting diodes and solar cells, due to their attractive optical and semiconducting properties. It is widely accepted that the optical and electrical properties of conjugated polymer molecules depend on the conjugated segments, i.e., chromophores in conjugated polymer molecule. The study of the evolution of the absorption and emission properties of single conjugated polymer molecules is essential to provide complementary information for the influence of conformation of conjugated polymer on its energy transfer process, as well as on the performance of optoelectronic devices based on conjugated polymers. Although the extensive studies have been reported to elucidate the optical properties of conjugated polymers with single molecule spectroscopy, simultaneous revealing their absorption and emission properties and their real-time evolution are rarely reported. In this paper, we simultaneously measure the absorption and emission properties of chromophores in single Poly2,7-(9,9-dioctylfluorene)-alt-4,7-bis(thiophen-2-yl)benzo-2,1,3-thiadiazole](PFO-DBT) conjugated polymer molecules and their real-time evolution by frequency-domain reconstructed defocused wide-field imaging. The emission dipole orientation of chromophore is achieved by applying defocused wide-field fluorescence imaging. The change of defocused patterns of individual polymer chain describes the angular distribution of emitted light and thus the emitting dipole orientation. Meanwhile, the absorption dipole orientation of chromophore in single conjugated PFO-DBT polymer molecule can be clarified in reconstructed frequency-domain imaging by modulating the relative phase of the pulse pairs and performing Fourier transform to the photoluminescence response. The population density of excited state of absorbing chromophore depends both on the relative phase between the ultrashort pulse pairs and on the orientation of absorption transition dipole moment of the chromophore. By extracting the frequency-domain information of fluorescence that is proportional to the population density of excited state, the evolution of absorption dipole orientation of chromophore can be derived. We distinguish three cases for the evolution of chromophores of single PFO-DBT conjugated polymer molecules: the absorption and emission chromophores both keep constant in single PFO-DBT conjugated polymer molecules; one of the dipole orientations of absorption and emission changes, while the other remains unchanged; both of them change simultaneously. The results may pave the way for the further understanding of the role of conformation in the energy transfer pathway in both natural and artificial light harvesting systems at nano- and micro-level.
Keywords:conjugated polymers  single molecule spectroscopy  defocused imaging  transition dipole orientation
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