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Monte Carlo Wavefunction Approach to Singlet Fission Dynamics of Molecular Aggregates
- Source :
- Molecules, Vol 24, Iss 3, p 541 (2019), Molecules, Volume 24, Issue 3
- Publication Year :
- 2019
- Publisher :
- MDPI AG, 2019.
-
Abstract
- We have developed a Monte Carlo wavefunction (MCWF) approach to the singlet fission (SF) dynamics of linear aggregate models composed of monomers with weak diradical character. As an example, the SF dynamics for a pentacene dimer model is investigated by considering the intermolecular electronic coupling and the vibronic coupling. By comparing with the results by the quantum master equation (QME) approach, we clarify the dependences of the MCWF results on the time step (&Delta<br />t) and the number of MC trajectories (MC). The SF dynamics by the MCWF approach is found to quantitatively (within an error of 0.02% for SF rate and of 0.005% for double-triplet (TT) yield) reproduce that by the QME approach when using a sufficiently small &Delta<br />t (~0.03 fs) and a sufficiently large MC (~105). The computational time (treq) in the MCWF approach also exhibits dramatic reduction with increasing the size of aggregates (N-mers) as compared to that in the QME approach, e.g., ~34 times faster at the 20-mer, and the size-dependence of treq shows significant reduction from N5.15 (QME) to N3.09 (MCWF). These results demonstrate the promising high performance of the MCWF approach to the SF dynamics in extended multiradical molecular aggregates including a large number of quantum dissipation, e.g., vibronic coupling, modes.
- Subjects :
- molecular aggregate
Time Factors
Naphthacenes
Monte Carlo method
Pharmaceutical Science
Electrons
02 engineering and technology
010402 general chemistry
01 natural sciences
Molecular physics
Article
Analytical Chemistry
lcsh:QD241-441
quantum master equation
lcsh:Organic chemistry
Quantum master equation
Drug Discovery
Physics::Chemical Physics
Physical and Theoretical Chemistry
Wave function
Physics
Diradical
Organic Chemistry
Intermolecular force
singlet fission
021001 nanoscience & nanotechnology
Monte Carlo wavefunction
0104 chemical sciences
Vibronic coupling
Kinetics
Models, Chemical
Chemistry (miscellaneous)
Singlet fission
Molecular Medicine
Quantum Theory
Thermodynamics
0210 nano-technology
Quantum dissipation
Dimerization
Monte Carlo Method
Subjects
Details
- Language :
- English
- ISSN :
- 14203049
- Volume :
- 24
- Issue :
- 3
- Database :
- OpenAIRE
- Journal :
- Molecules
- Accession number :
- edsair.doi.dedup.....978d1fc578fafb1929ac5aeaed88352c