Direct nonadiabatic quantum dynamics simulations of the photodissociation of phenol

被引:14
作者
Christopoulou, Georgia [1 ]
Tran, Thierry [1 ,2 ]
Worth, Graham A. [1 ]
机构
[1] UCL, Dept Chem, London WC1H 0AJ, England
[2] Imperial Coll London, Dept Chem, White City Campus, London W12 0BZ, England
关键词
POTENTIAL-ENERGY SURFACES; AROMATIC-MOLECULES; NUCLEAR MOTION; PHOTOCHEMISTRY; STATES; DETACHMENT; PHOTOLYSIS; ALGORITHM; ELECTRON; SYSTEM;
D O I
10.1039/d1cp01843d
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Gaussian wavepacket methods are becoming popular for the investigation of nonadiabatic molecular dynamics. In the present work, a recently developed efficient algorithm for the Direct Dynamics variational Multi-Configurational Gaussian (DD-vMCG) method has been used to describe the multidimensional photodissociation dynamics of phenol including all degrees of freedom. Full-dimensional quantum dynamic calculations including for the first time six electronic states ((1)pi pi, 1(1)pi pi*, 1(1)pi sigma*, 2(1)pi sigma*, 2(1)pi pi*, 3(1)pi pi*), along with a comparison to an existing analytical 4-state model for the potential energy surfaces are presented. Including the fifth singlet excited state is shown to have a significant effect on the nonadiabatic photodissociation of phenol to the phenoxyl radical and hydrogen atom. State population and flux analysis from the DD-vMCG simulations of phenol provided further insights into the decay mechanism, confirming the idea of rapid relaxation to the ground state through the (1)pi pi/1(1)pi sigma* conical intersection.
引用
收藏
页码:23684 / 23695
页数:12
相关论文
共 50 条
[31]   Multi-configurational Ehrenfest simulations of ultrafast nonadiabatic dynamics in a charge-transfer complex [J].
Ma, Tianji ;
Bonfanti, Matteo ;
Eisenbrandt, Pierre ;
Martinazzo, Rocco ;
Burghardt, Irene .
JOURNAL OF CHEMICAL PHYSICS, 2018, 149 (24)
[32]   Nonadiabatic dynamics study of methaniminium with ORMAS: Challenges of incomplete active spaces in dynamics simulations [J].
West, Aaron C. ;
Barbatti, Mario ;
Lischka, Hans ;
Windus, Theresa L. .
COMPUTATIONAL AND THEORETICAL CHEMISTRY, 2014, 1040 :158-166
[33]   Communication: On the competition between adiabatic and nonadiabatic dynamics in vibrationally mediated ammonia photodissociation in its A band [J].
Xie, Changjian ;
Zhu, Xiaolei ;
Ma, Jianyi ;
Yarkony, David R. ;
Xie, Daiqian ;
Guo, Hua .
JOURNAL OF CHEMICAL PHYSICS, 2015, 142 (09)
[34]   Toward a Correct Description of Initial Electronic Coherence in Nonadiabatic Dynamics Simulations [J].
Mannouch, Jonathan R. ;
Kelly, Aaron .
JOURNAL OF PHYSICAL CHEMISTRY LETTERS, 2024, 15 (46) :11687-11695
[35]   Quantum Dynamics of Nonadiabatic Renner-Teller Effects in Atom plus Diatom Collisions [J].
Gamallo, Pablo ;
Gonzalez, Miguel ;
Petrongolo, Carlo .
JOURNAL OF PHYSICAL CHEMISTRY A, 2021, 125 (31) :6637-6652
[36]   Ultrafast solvent migration in an iron complex revealed by nonadiabatic dynamics simulations [J].
Polonius, Severin ;
Gonzalez, Leticia ;
Mai, Sebastian .
CHEMICAL SCIENCE, 2025, 16 (24) :11128-11137
[37]   Topologically Correct Quantum Nonadiabatic Formalism for On-the-Fly Dynamics [J].
Joubert-Doriol, Loic ;
Siyasubramanium, Janakan ;
Ryabinkin, Ilya G. ;
Izmaylov, Artur F. .
JOURNAL OF PHYSICAL CHEMISTRY LETTERS, 2017, 8 (02) :452-456
[38]   Nonadiabatic Quantum Dynamics of Molecules Scattering from Metal Surfaces [J].
Preston, Riley J. ;
Ke, Yaling ;
Rudge, Samuel L. ;
Hertl, Nils ;
Borrelli, Raffaele ;
Maurer, Reinhard J. ;
Thoss, Michael .
JOURNAL OF CHEMICAL THEORY AND COMPUTATION, 2025, 21 (03) :1054-1063
[39]   Surface Hopping Dynamics beyond Nonadiabatic Couplings for Quantum Coherence [J].
Ha, Jong-Kwon ;
Lee, In Seong ;
Min, Seung Kyu .
JOURNAL OF PHYSICAL CHEMISTRY LETTERS, 2018, 9 (05) :1097-1104
[40]   Nonadiabatic Dynamics with Coupled Trajectories [J].
Pieroni, Carlotta ;
Agostini, Federica .
JOURNAL OF CHEMICAL THEORY AND COMPUTATION, 2021, 17 (10) :5969-5991