We present condensed-phase first-principles molecular dynamics simulations to elucidate the presence of different electron trapping sites in liquid methanol and their roles in the formation, electronic transitions, and relaxation of solvated electrons (e(met)(-)) in methanol. Excess electrons injected into liquid methanol are most likely trapped by methyl groups, but rapidly diffuse to more stable trapping sites with dangling OH bonds. After localization at the sites with one free OH bond (1OH trapping sites), reorientation of other methanol molecules increases the OH coordination number and the trap depth, and ultimately four OH bonds become coordinated with the excess electrons under thermal conditions. The simulation identified four dist...
Solvated electrons, and hydrated electrons in particular, are important spe-cies in condensed phase ...
Four recently proposed intermolecular-potential models have been used in molecular-dynamics simulati...
This work provides a detailed mechanism for electron transfer in a heterodinuclear complex designed ...
We performed a series of ab initio molecular dynamics simulations to investigate the physical proper...
We performed a series of comparative quantum chemical calculations on various size negatively charge...
In polar fluids such as water and methanol, the peak of the solvated electron's absorption spectrum ...
Monomers and small clusters of such molecules can reversibly trap conduction band electrons in dilut...
Author Institution: Department of Chemistry, University of California - Berkeley, Berkeley, CA 94720...
The solvation structure of a solvated electron in methanol is investigated with ab initio calculatio...
We present a density-functional theory based molecular-dynamics study of the structural, dynamical, ...
Structural, dynamical, bonding, and electronic properties of water molecules around a soluted methan...
Although many H-bonded systems have been extensively investigated by means of infrared (IR) spectros...
High-energy irradiation of protic solvents can transiently introduce excess electrons that are impli...
A new electron–methanol molecule pseudopotential is developed and tested in the present paper. The f...
We perform molecular dynamics computer simulations in order to study the equation of state and the s...
Solvated electrons, and hydrated electrons in particular, are important spe-cies in condensed phase ...
Four recently proposed intermolecular-potential models have been used in molecular-dynamics simulati...
This work provides a detailed mechanism for electron transfer in a heterodinuclear complex designed ...
We performed a series of ab initio molecular dynamics simulations to investigate the physical proper...
We performed a series of comparative quantum chemical calculations on various size negatively charge...
In polar fluids such as water and methanol, the peak of the solvated electron's absorption spectrum ...
Monomers and small clusters of such molecules can reversibly trap conduction band electrons in dilut...
Author Institution: Department of Chemistry, University of California - Berkeley, Berkeley, CA 94720...
The solvation structure of a solvated electron in methanol is investigated with ab initio calculatio...
We present a density-functional theory based molecular-dynamics study of the structural, dynamical, ...
Structural, dynamical, bonding, and electronic properties of water molecules around a soluted methan...
Although many H-bonded systems have been extensively investigated by means of infrared (IR) spectros...
High-energy irradiation of protic solvents can transiently introduce excess electrons that are impli...
A new electron–methanol molecule pseudopotential is developed and tested in the present paper. The f...
We perform molecular dynamics computer simulations in order to study the equation of state and the s...
Solvated electrons, and hydrated electrons in particular, are important spe-cies in condensed phase ...
Four recently proposed intermolecular-potential models have been used in molecular-dynamics simulati...
This work provides a detailed mechanism for electron transfer in a heterodinuclear complex designed ...