Cell cycle control of histone H4 gene transcription is mediated by the multipartite promoter domain H4-Site II, which supports transcriptional activation at the G1/S phase transition and modulates basal H4 gene transcription. Proliferation-specific transcription is determined by the integrated activ
A time-dependent approach to the nonradiative decay of polyatomic molecule: S1 to S0 transition of H2CO
โ Scribed by Tohru Nakajima; Shigeki Kato
- Publisher
- Elsevier Science
- Year
- 1996
- Tongue
- English
- Weight
- 324 KB
- Volume
- 250
- Category
- Article
- ISSN
- 0009-2614
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โฆ Synopsis
A time-dependent method to estimate a nonradiative transition rate was proposed and applied to the problem of decay of S j to S o state of formaldehyde. This approach is based upon the wave packet propagation with the reaction path Hamiltonian and the direct calculations of electronic matrix elements of nonadiabatic coupling using ab initio MO method. Since the auto-correlation function, operated with a Fourier transformation to obtain the rate constant, decays within a short time by introducing the effective Hamiltonian in time propagator, it is possible to estimate the rate constant by short time propagation of wave packet. The calculated nonradiative decay rates were in good agreement with the experimental ones.
๐ SIMILAR VOLUMES
Two theoretical models, a reorganization model and an activation model, are presented for accurately determining the energy barrier of the type ลฝ . 2qr3q M H O of the transition-metal complexes in the electron-transfer process. Ab initio 2 6 ลฝ . 2qr3q calculations are carried out at UMP2r6-311G leve