A detailed theoretical investigation of the large amplitude motions in the S, excited electronic state of formic acid (HCOOH) was done. This study focussed on the the S, «- So electronic band system of formic acid (HCOOH). The torsion and wagging large amplitude motions of the S, were considered in detail. The potential surfaces were simulated using RHF/UHF ab-initio calculations for the two electronic states. The energy levels were evaluated by the variational method using free rotor basis functions for the torsional coordinates and harmonic oscillator basis functions for the wagging coordinates. The simulated spectrum was compared to the slit-jet-cooled fluorescence excitation spectrum allowing for the assignment of several vibron...
Author Institution: Department of Chemistry, University of Wisconsin-Madison, Madison, WI 53706Upon ...
A theoretical study of the vibrational structure of the math 2A′ ground and math 2A′ excited states ...
Author Institution: Department of Chemistry, University of Wisconsin-Madison, Madison, WI 53706Three...
Author Institution: Department of Chemistry, Brock University; Department of Chemistry, University o...
Author Institution: Department of chemistry, Brock University; Department of Chemistry, University o...
A fluorescence excitation spectrum of formic acid monomer (HCOOH) , has been recorded in the 278-24...
The OH stretch ($\nub{1}$) fundamental band of a non-native (cis vs trans) conformer of formic acid ...
The empirically derived assignment of the strongly interacting 51 and 92 vibrational states of trans...
$^{a}$Present address: Department of Physics, The Ohio State University, Columbus, Ohio 43210, $^{b}...
Context. Formic acid, HCOOH, is the simplest organic acid and the first that has been identified in ...
A variety of strategies are employed to probe the photophysics of formic acid axcited to rovibronic ...
Context. Formic acid, HCOOH, is the simplest organic acid and the first that has been identified in ...
Using high-resolution Fourier transform spectra of trans-HCOOH recorded at 5.6 μm, we carried out an...
The vibration-rotation-tunneling spectrum of formic acid dimer, (HCOOH)$_{2}$, in the spectral regio...
Vibrational states of the formic acid molecule are converged using the GENIUSH-Smolyak approach and ...
Author Institution: Department of Chemistry, University of Wisconsin-Madison, Madison, WI 53706Upon ...
A theoretical study of the vibrational structure of the math 2A′ ground and math 2A′ excited states ...
Author Institution: Department of Chemistry, University of Wisconsin-Madison, Madison, WI 53706Three...
Author Institution: Department of Chemistry, Brock University; Department of Chemistry, University o...
Author Institution: Department of chemistry, Brock University; Department of Chemistry, University o...
A fluorescence excitation spectrum of formic acid monomer (HCOOH) , has been recorded in the 278-24...
The OH stretch ($\nub{1}$) fundamental band of a non-native (cis vs trans) conformer of formic acid ...
The empirically derived assignment of the strongly interacting 51 and 92 vibrational states of trans...
$^{a}$Present address: Department of Physics, The Ohio State University, Columbus, Ohio 43210, $^{b}...
Context. Formic acid, HCOOH, is the simplest organic acid and the first that has been identified in ...
A variety of strategies are employed to probe the photophysics of formic acid axcited to rovibronic ...
Context. Formic acid, HCOOH, is the simplest organic acid and the first that has been identified in ...
Using high-resolution Fourier transform spectra of trans-HCOOH recorded at 5.6 μm, we carried out an...
The vibration-rotation-tunneling spectrum of formic acid dimer, (HCOOH)$_{2}$, in the spectral regio...
Vibrational states of the formic acid molecule are converged using the GENIUSH-Smolyak approach and ...
Author Institution: Department of Chemistry, University of Wisconsin-Madison, Madison, WI 53706Upon ...
A theoretical study of the vibrational structure of the math 2A′ ground and math 2A′ excited states ...
Author Institution: Department of Chemistry, University of Wisconsin-Madison, Madison, WI 53706Three...