2020
DOI: 10.1039/d0cs00484g
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Access to the triplet excited states of organic chromophores

Abstract: Triplet excited states, ubiquitous in organic chromophores, can be accessed through various pathways. The feasibility of each pathway is determined by the molecular and electronic structures of the organic chromophores.

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Cited by 122 publications
(204 citation statements)
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“…19) and helicenes, 20,21 will not be discussed in this review; interested readers can refer for instance to recently published reviews. 22,23…”
Section: Inter System Crossing In Organic Dyesmentioning
confidence: 99%
“…19) and helicenes, 20,21 will not be discussed in this review; interested readers can refer for instance to recently published reviews. 22,23…”
Section: Inter System Crossing In Organic Dyesmentioning
confidence: 99%
“…17,18 In general, the SOC is much greater in heavy element-containing systems due to its dependence on the nuclear charge, which is referred to as the heavy atom effect (HAE). 19 Thus, in many systems containing atoms such as Ir and Pt, ISC and phosphorescence (Ph) are dominant. 10,20,21 However, enhancing SOC in purely organic chromophores through a non-metal HAE using Cl, Br, I, 22,23 and most recently S, Se, and Te [24][25][26] has attracted attention for developing sustainable strategies to induce ISC.…”
Section: Introductionmentioning
confidence: 99%
“…It is anticipated that a better dyad orientation would also enable a faster TTA through an intramolecular process, though the analysis of TTA process have not reached to the level that reveals an acceleration of kTTA. The original strategy of elongation of tT described in this effort will plays an important role in improving the characteristics of not only TTA-UC systems 45 but also other devices that operate through formation and decay of triplet-excited species 46 such as organic light-emitting diodes 47,48 and organic solar cells. 7,8,49,50 ASSOCIATED CONTENT…”
Section: Discussionmentioning
confidence: 99%