Theoretical studies on triplet formations in nitrobenzoxadiazole (NBD) derivatives: The impact of donor group and heteroatom substitution
Heavy-atom-free triplet photosensitizers (TPs) have attracted much interest due to the applications in triplet–triplet annihilation (TTA) and photodynamic therapy. Recently, several nitrobenzoxadiazole (NBD) derivatives have been reported to generate singlet oxygens. However, the mechanistic underst...
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doaj-31a19c3fa03949388ee3fe7a16ff0c372021-03-07T04:29:24ZengElsevierResults in Chemistry2211-71562021-01-013100116Theoretical studies on triplet formations in nitrobenzoxadiazole (NBD) derivatives: The impact of donor group and heteroatom substitutionChao Wang0Hui Juan Koh1Zhaochao Xu2Xiaogang Liu3Fluorescence Research Group, Singapore University of Technology and Design, 8 Somapah Road, Singapore 487372, Singapore; CAS Key Laboratory of Separation Science for Analytical Chemistry, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, 457 Zhongshan Road, Dalian 116023, ChinaFluorescence Research Group, Singapore University of Technology and Design, 8 Somapah Road, Singapore 487372, SingaporeCAS Key Laboratory of Separation Science for Analytical Chemistry, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, 457 Zhongshan Road, Dalian 116023, China; Corresponding authors.Fluorescence Research Group, Singapore University of Technology and Design, 8 Somapah Road, Singapore 487372, Singapore; Corresponding authors.Heavy-atom-free triplet photosensitizers (TPs) have attracted much interest due to the applications in triplet–triplet annihilation (TTA) and photodynamic therapy. Recently, several nitrobenzoxadiazole (NBD) derivatives have been reported to generate singlet oxygens. However, the mechanistic understanding of the intersystem crossing (ISC) process has not been studied, resulting in a lack of rational design strategies for creating effective TPs. Based on DFT and TD-DFT calculations, we found that the replacement of donor group (methylamino → methoxyl) and the heteroatom (oxadiazole → triazole) could induce a significant change in the nature of triplet excited states in comparison to that of the single excited states, and thus enable substantial spin-orbital couplings for efficient triplet conversions. We expect that modifying the electronic properties of the triplet excited states through donor/heteroatom substitution is a promising method for creating heavy-atom-free TPs in many chemical families of fluorophores.http://www.sciencedirect.com/science/article/pii/S2211715621000217NitrobenzoxadiazoleTD-DFTSpin-orbital couplingMolecular engineering |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Chao Wang Hui Juan Koh Zhaochao Xu Xiaogang Liu |
spellingShingle |
Chao Wang Hui Juan Koh Zhaochao Xu Xiaogang Liu Theoretical studies on triplet formations in nitrobenzoxadiazole (NBD) derivatives: The impact of donor group and heteroatom substitution Results in Chemistry Nitrobenzoxadiazole TD-DFT Spin-orbital coupling Molecular engineering |
author_facet |
Chao Wang Hui Juan Koh Zhaochao Xu Xiaogang Liu |
author_sort |
Chao Wang |
title |
Theoretical studies on triplet formations in nitrobenzoxadiazole (NBD) derivatives: The impact of donor group and heteroatom substitution |
title_short |
Theoretical studies on triplet formations in nitrobenzoxadiazole (NBD) derivatives: The impact of donor group and heteroatom substitution |
title_full |
Theoretical studies on triplet formations in nitrobenzoxadiazole (NBD) derivatives: The impact of donor group and heteroatom substitution |
title_fullStr |
Theoretical studies on triplet formations in nitrobenzoxadiazole (NBD) derivatives: The impact of donor group and heteroatom substitution |
title_full_unstemmed |
Theoretical studies on triplet formations in nitrobenzoxadiazole (NBD) derivatives: The impact of donor group and heteroatom substitution |
title_sort |
theoretical studies on triplet formations in nitrobenzoxadiazole (nbd) derivatives: the impact of donor group and heteroatom substitution |
publisher |
Elsevier |
series |
Results in Chemistry |
issn |
2211-7156 |
publishDate |
2021-01-01 |
description |
Heavy-atom-free triplet photosensitizers (TPs) have attracted much interest due to the applications in triplet–triplet annihilation (TTA) and photodynamic therapy. Recently, several nitrobenzoxadiazole (NBD) derivatives have been reported to generate singlet oxygens. However, the mechanistic understanding of the intersystem crossing (ISC) process has not been studied, resulting in a lack of rational design strategies for creating effective TPs. Based on DFT and TD-DFT calculations, we found that the replacement of donor group (methylamino → methoxyl) and the heteroatom (oxadiazole → triazole) could induce a significant change in the nature of triplet excited states in comparison to that of the single excited states, and thus enable substantial spin-orbital couplings for efficient triplet conversions. We expect that modifying the electronic properties of the triplet excited states through donor/heteroatom substitution is a promising method for creating heavy-atom-free TPs in many chemical families of fluorophores. |
topic |
Nitrobenzoxadiazole TD-DFT Spin-orbital coupling Molecular engineering |
url |
http://www.sciencedirect.com/science/article/pii/S2211715621000217 |
work_keys_str_mv |
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