Mixed-Reference Spin-Flip Time-Dependent Density Functional Theory for Accurate X-ray Absorption Spectroscopy

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초록

It is demonstrated that the challenging core-hole particle (CHP) orbital relaxation for core electron spectra can be readily achieved by the mixed-reference spin-flip (MRSF)-time-dependent density functional theory (TDDFT). With the additional scalar relativistic effects on K-edge excitation energies of 24 second-and 17 third-row molecules, the particular Delta CHP-MRSF(R) exhibited near perfect predictions with RMSE similar to 0.5 eV, featuring a median value of 0.3 and an interquartile range of 0.4. Overall, the CHP effect is 2-4 times stronger than relativistic ones, contributing more than 20 eV in the cases of sulfur and chlorine third-row atoms. Such high precision allows to explain the splitting and spectral shapes of O, N, and C atom K-edges in the ground state of thymine with atom as well as orbital specific accuracy. The same protocol with a double hole particle relaxation also produced remarkably accurate K-edge spectra of core to valence hole excitation energies from the first (nO8 pi*) and second (pi pi*) excited states of thymine, confirming the assignment of 1s -> n excitation for the experimentally observed 526.4 eV peak. Regarding both accuracy and practicality, therefore, MRSF-TDDFT provides a promising protocol for core electron spectra of both ground and excited electronic states alike.

키워드

ELECTRON-ENERGY-LOSS; K-SHELL EXCITATION; PHOTOABSORPTION SPECTRA; INNER-SHELL; GAS-PHASE; SULFUR-K; CORE; EDGE; MOLECULES; CARBON
제목
Mixed-Reference Spin-Flip Time-Dependent Density Functional Theory for Accurate X-ray Absorption Spectroscopy
저자
Park, Woojin; Alias-Rodriguez, Marc; Cho, Daeheum; Lee, Seunghoon; Huix-Rotllant, Miquel; Choi, Cheol Ho
DOI
10.1021/acs.jctc.2c00746
발행일
2022-10-11
유형
Article
저널명
Journal of Chemical Theory and Computation
권
18
호
10
페이지
6240 ~ 6250