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Pressure-Promoted Triplet-Pair Separation in Singlet-Fission TIPS-Pentacene Nanofilms Revealed by Ultrafast Spectroscopy
2024-08
发表期刊NANOMATERIALS (IF:4.4[JCR-2023],4.7[5-Year])
ISSN2079-4991
EISSN-
卷号-期号:-页码:-
发表状态已发表
DOI10.3390/nano14181487
摘要

Singlet fission (SF), as an effective way to break through the Shockley–Queisser limit, can dramatically improve energy conversion efficiency in solar cell areas. The formation, separation, and relaxation of triplet-pair excitons directly affect the triplet yield, especially triplet-pair separation; thus, how to enhance the triplet-pair separation rate becomes one of the key points to improve SF efficiency; the decay mechanism where the singlet state is converted into two triplet states is significant for the study of the SF mechanism. Herein, we employ ultrafast transient absorption spectroscopy to study the singlet-fission process of nano-amorphous 6, 13-bis(triisopropylsilylethynyl)-Pentacene (TIPS-pentacene) films in a diamond anvil cell (DAC). A kinetics model related to the structural geometric details, as well as an evaluation of the pressure manipulation impacts, is demonstrated based on the experimental results. The results indicate that pressure manipulation enhanced the triplet-pair separation rates of SF-based materials according to their structural micro-environmental improvement when compressed in DAC, while the triplet-exciton transportation lifetime is prolonged. This work shows that pressure may effectively optimize the structural disorder of SF materials, which were found to improve triplet-pair separation efficiency and potentially offer an effective way to further improve SF efficiency.

关键词singlet fission amorphous films diamond anvil cell transient absorption
学科门类理学 ; 理学::物理学
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收录类别SCI
语种英语
资助项目National Natural Science Foundation of China (NSFC)["21727801","12204023","42050203","U2230401"] ; Shanghai Pujiang Program[20PJ1411300] ; Shanghai Key Laboratory of Material Frontiers Research in Extreme Environments (MFree), China[22dz2260800] ; Shanghai Science and Technology Committee, China[22JC1410300] ; null[2021YFA1500604]
WOS研究方向Chemistry ; Science & Technology - Other Topics ; Materials Science ; Physics
WOS类目Chemistry, Multidisciplinary ; Nanoscience & Nanotechnology ; Materials Science, Multidisciplinary ; Physics, Applied
WOS记录号WOS:001323912200001
出版者MDPI
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文献类型期刊论文
条目标识符https://kms.shanghaitech.edu.cn/handle/2MSLDSTB/404308
专题物质科学与技术学院
物质科学与技术学院_PI研究组_刘伟民组
物质科学与技术学院_硕士生
物质科学与技术学院_博士生
大科学中心_PI研究组_翁祖谦组
大科学中心_公共科研平台_大科学装置建设部
通讯作者Ruixue,Zhu; Yang,Lu; Tsu-Chieu,Weng
作者单位
1.ShanghaiTech University,School of Physical Science and Technology
2.Shanghai Tech University,Center for Transformative Science
3.Center for High Pressure Science & Technology Advanced Research
4.Shanghai Key Laboratory of Material Frontiers Research in Extreme Environments (MFree)
第一作者单位物质科学与技术学院
通讯作者单位上海科技大学;  物质科学与技术学院
第一作者的第一单位物质科学与技术学院
推荐引用方式
GB/T 7714
Lu,Wang,Ruixue,Zhu,Ruihua,Pu,et al. Pressure-Promoted Triplet-Pair Separation in Singlet-Fission TIPS-Pentacene Nanofilms Revealed by Ultrafast Spectroscopy[J]. NANOMATERIALS,2024,-(-):-.
APA Lu,Wang,Ruixue,Zhu,Ruihua,Pu,Weimin,Liu,Yang,Lu,&Tsu-Chieu,Weng.(2024).Pressure-Promoted Triplet-Pair Separation in Singlet-Fission TIPS-Pentacene Nanofilms Revealed by Ultrafast Spectroscopy.NANOMATERIALS,-(-),-.
MLA Lu,Wang,et al."Pressure-Promoted Triplet-Pair Separation in Singlet-Fission TIPS-Pentacene Nanofilms Revealed by Ultrafast Spectroscopy".NANOMATERIALS -.-(2024):-.
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