Literature DB >> 25329724

Interfacing the Ab initio multiple spawning method with electronic structure methods in GAMESS: Photodecay of trans-azomethane.

Alexander Gaenko1, Albert DeFusco, Sergey A Varganov, Todd J Martínez, Mark S Gordon.   

Abstract

This work presents a nonadiabatic molecular dynamics study of the nonradiative decay of photoexcited trans-azomethane, using the ab initio multiple spawning (AIMS) program that has been interfaced with the General Atomic and Molecular Electronic Structure System (GAMESS) quantum chemistry package for on-the-fly electronic structure evaluation. The interface strategy is discussed, and the capabilities of the combined programs are demonstrated with a nonadiabatic molecular dynamics study of the nonradiative decay of photoexcited trans-azomethane. Energies, gradients, and nonadiabatic coupling matrix elements were obtained with the state-averaged complete active space self-consistent field method, as implemented in GAMESS. The influence of initial vibrational excitation on the outcome of the photoinduced isomerization is explored. Increased vibrational excitation in the CNNC torsional mode shortens the excited state lifetime. Depending on the degree of vibrational excitation, the excited state lifetime varies from ∼60-200 fs. These short lifetimes are in agreement with time-resolved photoionization mass spectroscopy experiments.

Entities:  

Year:  2014        PMID: 25329724     DOI: 10.1021/jp508242j

Source DB:  PubMed          Journal:  J Phys Chem A        ISSN: 1089-5639            Impact factor:   2.781


  1 in total

1.  Quantum Chemistry Common Driver and Databases (QCDB) and Quantum Chemistry Engine (QCEngine): Automation and interoperability among computational chemistry programs.

Authors:  Daniel G A Smith; Annabelle T Lolinco; Zachary L Glick; Jiyoung Lee; Asem Alenaizan; Taylor A Barnes; Carlos H Borca; Roberto Di Remigio; David L Dotson; Sebastian Ehlert; Alexander G Heide; Michael F Herbst; Jan Hermann; Colton B Hicks; Joshua T Horton; Adrian G Hurtado; Peter Kraus; Holger Kruse; Sebastian J R Lee; Jonathon P Misiewicz; Levi N Naden; Farhad Ramezanghorbani; Maximilian Scheurer; Jeffrey B Schriber; Andrew C Simmonett; Johannes Steinmetzer; Jeffrey R Wagner; Logan Ward; Matthew Welborn; Doaa Altarawy; Jamshed Anwar; John D Chodera; Andreas Dreuw; Heather J Kulik; Fang Liu; Todd J Martínez; Devin A Matthews; Henry F Schaefer; Jiří Šponer; Justin M Turney; Lee-Ping Wang; Nuwan De Silva; Rollin A King; John F Stanton; Mark S Gordon; Theresa L Windus; C David Sherrill; Lori A Burns
Journal:  J Chem Phys       Date:  2021-11-28       Impact factor: 3.488

  1 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.