We show that the transition origins of electronic excitations identified by quantified natural transition orbital (QNTO) analysis can be employed to connect potential energy surfaces (PESs) according to their character across a wide range of molecular geometries. This is achieved by locating the switching of transition origins of adiabatic potential surfaces as the geometry changes. The transition vectors for analysing transition origins are provided by linear response time-dependent density functional theory (TDDFT) calculations under the Tamm–Dancoff approximation. We study the photochemical CO ring opening of oxirane as an example and show that the results corroborate the traditional Gomer–Noyes mechanism derived experimentally. The know...
Thesis (Ph.D.)--University of Washington, 2016-06The microscopic and molecular-level characterizatio...
Electron transfer and energy transfer play a central role in photo-induced excited state chemical dy...
We analyze potentials and limits of the Time- Dependent Density Functional Theory (TD-DFT) approach ...
The development of analytic-gradient methodology for excited states within conventional time-depende...
This chapter gives an introduction to qualitative and quantitative topological analyses of molecular...
We combine quantified natural transition orbital (QNTO) analysis with large-scale linear response ti...
Density functional theory (DFT) based modeling of electronic excited states is of importance for inv...
A time-independent density functional approach to the calculation of excitation energies from the gr...
We present a new approach to calculating potential energy surfaces for photochemical reactions by co...
In this dissertation, we will investigate two different areas of electronic structure theory.In the ...
A theoretical study of electron transfer (ET) and excitation energy transfer (EET) processes can yie...
Localized molecular orbitals are often used for the analysis of chemical bonds, but they can also se...
We combine quantified natural transition orbital (QNTO) analysis with large-scale linear response ti...
Rearranging chemical bonds is chemistry. Simulating chemical reactions is an expensive and complex p...
This study proposes a quantitative and qualitative comparison of two popular metrics used for time-d...
Thesis (Ph.D.)--University of Washington, 2016-06The microscopic and molecular-level characterizatio...
Electron transfer and energy transfer play a central role in photo-induced excited state chemical dy...
We analyze potentials and limits of the Time- Dependent Density Functional Theory (TD-DFT) approach ...
The development of analytic-gradient methodology for excited states within conventional time-depende...
This chapter gives an introduction to qualitative and quantitative topological analyses of molecular...
We combine quantified natural transition orbital (QNTO) analysis with large-scale linear response ti...
Density functional theory (DFT) based modeling of electronic excited states is of importance for inv...
A time-independent density functional approach to the calculation of excitation energies from the gr...
We present a new approach to calculating potential energy surfaces for photochemical reactions by co...
In this dissertation, we will investigate two different areas of electronic structure theory.In the ...
A theoretical study of electron transfer (ET) and excitation energy transfer (EET) processes can yie...
Localized molecular orbitals are often used for the analysis of chemical bonds, but they can also se...
We combine quantified natural transition orbital (QNTO) analysis with large-scale linear response ti...
Rearranging chemical bonds is chemistry. Simulating chemical reactions is an expensive and complex p...
This study proposes a quantitative and qualitative comparison of two popular metrics used for time-d...
Thesis (Ph.D.)--University of Washington, 2016-06The microscopic and molecular-level characterizatio...
Electron transfer and energy transfer play a central role in photo-induced excited state chemical dy...
We analyze potentials and limits of the Time- Dependent Density Functional Theory (TD-DFT) approach ...