Literature DB >> 29558159

Spin-Vibronic Mechanism for Intersystem Crossing.

Thomas J Penfold1, Etienne Gindensperger2, Chantal Daniel2, Christel M Marian3.   

Abstract

Intersystem crossing (ISC), formally forbidden within nonrelativistic quantum theory, is the mechanism by which a molecule changes its spin state. It plays an important role in the excited state decay dynamics of many molecular systems and not just those containing heavy elements. In the simplest case, ISC is driven by direct spin-orbit coupling between two states of different multiplicities. This coupling is usually assumed to remain unchanged by vibrational motion. It is also often presumed that spin-allowed radiationless transitions, i.e. internal conversion, and the nonadiabatic coupling that drives them, can be considered separately from ISC and spin-orbit coupling owing to the vastly different time scales upon which these processes are assumed to occur. However, these assumptions are too restrictive. Indeed, the strong mixing brought about by the simultaneous presence of nonadiabatic and spin-orbit coupling means that often the spin, electronic, and vibrational dynamics cannot be described independently. Instead of considering a simple ladder of states, as depicted in a Jablonski diagram, one must consider the more complicated spin-vibronic levels. Despite the basic ideas being outlined in the 1960s, it is only with the advent of high-level theory and femtosecond spectroscopy that the importance of the spin-vibronic mechanism for ISC in both fundamental as well as applied research fields has been revealed with significant impact across chemistry, physics, and biology. In this review article, we present the theory and fundamental principles of the spin-vibronic mechanism for ISC. This is followed by empirical rules to estimate the rate of ISC within this regime. The most recent developments in experimental techniques, theoretical methods, and models for the spin-vibronic mechanism are discussed. These concepts are subsequently illustrated with examples, including the ISC mechanisms in transition metal complexes, small organic molecules, and organic chromophores.

Entities:  

Year:  2018        PMID: 29558159     DOI: 10.1021/acs.chemrev.7b00617

Source DB:  PubMed          Journal:  Chem Rev        ISSN: 0009-2665            Impact factor:   60.622


  32 in total

1.  Elucidating the Electronic Structure of a Delayed Fluorescence Emitter via Orbital Interactions, Excitation Energy Components, Charge-Transfer Numbers, and Vibrational Reorganization Energies.

Authors:  Zheng Pei; Qi Ou; Yuezhi Mao; Junjie Yang; Aurélien de la Lande; Felix Plasser; Wanzhen Liang; Zhigang Shuai; Yihan Shao
Journal:  J Phys Chem Lett       Date:  2021-03-11       Impact factor: 6.475

2.  Uncovering dark multichromophoric states in Peridinin-Chlorophyll-Protein.

Authors:  Elliot J Taffet; Francesca Fassioli; Zi S D Toa; David Beljonne; Gregory D Scholes
Journal:  J R Soc Interface       Date:  2020-03-18       Impact factor: 4.118

3.  Machine Learning for Electronically Excited States of Molecules.

Authors:  Julia Westermayr; Philipp Marquetand
Journal:  Chem Rev       Date:  2020-11-19       Impact factor: 60.622

4.  Evaluation of molecular photophysical and photochemical properties using linear response time-dependent density functional theory with classical embedding: Successes and challenges.

Authors:  WanZhen Liang; Zheng Pei; Yuezhi Mao; Yihan Shao
Journal:  J Chem Phys       Date:  2022-06-07       Impact factor: 4.304

5.  Bis-Schiff base linkage-triggered highly bright luminescence of gold nanoclusters in aqueous solution at the single-cluster level.

Authors:  Haohua Deng; Kaiyuan Huang; Lingfang Xiu; Weiming Sun; Qiaofeng Yao; Xiangyu Fang; Xin Huang; Hamada A A Noreldeen; Huaping Peng; Jianping Xie; Wei Chen
Journal:  Nat Commun       Date:  2022-06-13       Impact factor: 17.694

Review 6.  Electronic structure of strongly correlated systems: recent developments in multiconfiguration pair-density functional theory and multiconfiguration nonclassical-energy functional theory.

Authors:  Chen Zhou; Matthew R Hermes; Dihua Wu; Jie J Bao; Riddhish Pandharkar; Daniel S King; Dayou Zhang; Thais R Scott; Aleksandr O Lykhin; Laura Gagliardi; Donald G Truhlar
Journal:  Chem Sci       Date:  2022-06-07       Impact factor: 9.969

Review 7.  Spin-flip luminescence.

Authors:  Winald Robert Kitzmann; Johannes Moll; Katja Heinze
Journal:  Photochem Photobiol Sci       Date:  2022-03-05       Impact factor: 4.328

8.  Population dynamics of multiple triplet excitons revealed from time-dependent fluorescence quenching of single conjugated polymer chains.

Authors:  Benjamin D Datko; John K Grey
Journal:  Sci Rep       Date:  2019-01-28       Impact factor: 4.379

9.  Vibrational Damping Reveals Vibronic Coupling in Thermally Activated Delayed Fluorescence Materials.

Authors:  Matthias Hempe; Nadzeya A Kukhta; Andrew Danos; Mark A Fox; Andrei S Batsanov; Andrew P Monkman; Martin R Bryce
Journal:  Chem Mater       Date:  2021-04-28       Impact factor: 9.811

10.  Manipulating molecules with strong coupling: harvesting triplet excitons in organic exciton microcavities.

Authors:  Daniel Polak; Rahul Jayaprakash; Thomas P Lyons; Luis Á Martínez-Martínez; Anastasia Leventis; Kealan J Fallon; Harriet Coulthard; David G Bossanyi; Kyriacos Georgiou; Anthony J Petty Ii; John Anthony; Hugo Bronstein; Joel Yuen-Zhou; Alexander I Tartakovskii; Jenny Clark; Andrew J Musser
Journal:  Chem Sci       Date:  2019-11-27       Impact factor: 9.825

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