For reliable calculation of vertical ionization energies (VIEs) of both core and valence electrons of gas-phase organic molecules and other small molecules, we developed DFT procedures in 1999 and 2009. The difference between core and valence VIEs give the energies for X-ray emission spectra (XES). The dipole matrix elements between core and valence electrons required for calculation of the XES intensities are now easily available. The simple procedure for calculation of reliable XES is demonstrated by comparison with known XES for H2O(g), NH3(g), CO(g), CO2(g), N2(g), and NNO(g). Consequently, the XES of H2CO(g), formamide(g), 1-nitrosamine(g), N-methylformamide(g), 1-nitrosoaziridine(g), and oxirane(g) are predicted with confidence.The ac...
Valence electron singlet excitation energies (VEExE), valence electron ionization energies (VEIE), c...
We introduce a fully stand-alone version of the Quantum Chemistry Electron Ionization Mass Spectra (...
In this Thesis studies of highly excited states in gas-phase atoms and molecules (He, Ne, N2, O2, N2...
The calculation of X-ray emission spectroscopy with equation of motion coupled cluster theory (EOM-C...
Developments on simulating X-ray spectroscopy using quantum chemistry are presented. Topics are intr...
The valence-to-core (VtC) K x-ray emission spectroscopy (XES) in the tender x-ray range is emerging ...
Nous exposons une méthode d'interprétation de l'émission X des molécules. La plus grande partie du...
Ab initio molecular orbital calculations for the energy and intensity of X-ray transitions associate...
The oxygen and nitrogen X-ray spectra for the N2O molecule have been calculated using an ab initio m...
The performance of X-ray spectroscopy techniques has been advanced by recent reviving in X-ray sourc...
We present a new theoretical approach for the simulations of X-ray photoelectron spectra of strongly...
The simulation of x-ray emission spectra of organic molecules using time-dependent density functiona...
The performance of several standard and popular approaches for calculating X-ray absorption spectra ...
The fine detail in the x-ray absorption spectra in the energy region of absorption edgesprovides the...
We report on the C K-edge x-ray absorption spectra and the resonant (RXES) and non-resonant (NXES) x...
Valence electron singlet excitation energies (VEExE), valence electron ionization energies (VEIE), c...
We introduce a fully stand-alone version of the Quantum Chemistry Electron Ionization Mass Spectra (...
In this Thesis studies of highly excited states in gas-phase atoms and molecules (He, Ne, N2, O2, N2...
The calculation of X-ray emission spectroscopy with equation of motion coupled cluster theory (EOM-C...
Developments on simulating X-ray spectroscopy using quantum chemistry are presented. Topics are intr...
The valence-to-core (VtC) K x-ray emission spectroscopy (XES) in the tender x-ray range is emerging ...
Nous exposons une méthode d'interprétation de l'émission X des molécules. La plus grande partie du...
Ab initio molecular orbital calculations for the energy and intensity of X-ray transitions associate...
The oxygen and nitrogen X-ray spectra for the N2O molecule have been calculated using an ab initio m...
The performance of X-ray spectroscopy techniques has been advanced by recent reviving in X-ray sourc...
We present a new theoretical approach for the simulations of X-ray photoelectron spectra of strongly...
The simulation of x-ray emission spectra of organic molecules using time-dependent density functiona...
The performance of several standard and popular approaches for calculating X-ray absorption spectra ...
The fine detail in the x-ray absorption spectra in the energy region of absorption edgesprovides the...
We report on the C K-edge x-ray absorption spectra and the resonant (RXES) and non-resonant (NXES) x...
Valence electron singlet excitation energies (VEExE), valence electron ionization energies (VEIE), c...
We introduce a fully stand-alone version of the Quantum Chemistry Electron Ionization Mass Spectra (...
In this Thesis studies of highly excited states in gas-phase atoms and molecules (He, Ne, N2, O2, N2...