scholarly journals Experimental and Computational Analysis of Para-Hydroxy Methylcinnamate Following Photoexcitation

Molecules ◽  
2021 ◽  
Vol 26 (24) ◽  
pp. 7621
Author(s):  
Jack Dalton ◽  
Gareth W. Richings ◽  
Jack M. Woolley ◽  
Temitope T. Abiola ◽  
Scott Habershon ◽  
...  

Para-hydroxy methylcinnamate is part of the cinnamate family of molecules. Experimental and computational studies have suggested conflicting non-radiative decay routes after photoexcitation to its S1(ππ*) state. One non-radiative decay route involves intersystem crossing mediated by an optically dark singlet state, whilst the other involves direct intersystem crossing to a triplet state. Furthermore, irrespective of the decay mechanism, the lifetime of the initially populated S1(ππ*) state is yet to be accurately measured. In this study, we use time-resolved ion-yield and photoelectron spectroscopies to precisely determine the S1(ππ*) lifetime for the s-cis conformer of para-hydroxy methylcinnamate, combined with time-dependent density functional theory to determine the major non-radiative decay route. We find the S1(ππ*) state lifetime of s-cis para-hydroxy methylcinnamate to be ∼2.5 picoseconds, and the major non-radiative decay route to follow the [1ππ*→1nπ*→3ππ*→S0] pathway. These results also concur with previous photodynamical studies on structurally similar molecules, such as para-coumaric acid and methylcinnamate.

RSC Advances ◽  
2021 ◽  
Author(s):  
Guanzhao Wen ◽  
Xianshao Zou ◽  
Rong Hu ◽  
Jun Peng ◽  
Zhifeng Chen ◽  
...  

Ground- and excited-states properties of N2200 have been studied by steady-state and time-resolved spectroscopies as well as time-dependent density functional theory calculations.


2014 ◽  
Vol 16 (28) ◽  
pp. 14504-14513 ◽  
Author(s):  
Johanna I. Fuks ◽  
Neepa T. Maitra

Adiabatic TDDFT fails for time-resolved charge-transfer in a simple model, even when linear response spectra is accurate.


Author(s):  
Hugo López Peña ◽  
Derrick Ampadu Boateng ◽  
Shane McPherson ◽  
Katharine Moore Tibbetts

The electronic potential energy surfaces of nitrobenzene cation obtained from time-dependent density functional theory calculations are used to predict the most efficient excitation wavelength for femtosecond time-resolved mass spectrometry measurements....


Sign in / Sign up

Export Citation Format

Share Document