The hydrogen bond (HB) is central to our understanding of the properties of water. However, despite intense theoretical and experimental study, it continues to hold some surprises. Here, we show from an analysis of ab initio simulations that take proper account of nuclear quantum effects that the hydrogen-bonded protons in liquid water experience significant excursions in the direction of the acceptor oxygen atoms. This generates a small but nonnegligible fraction of transient autoprotolysis events that are not seen in simulations with classical nuclei. These events are associated with major rearrangements of the electronic density, as revealed by an analysis of the computed Wannier centers and (1)H chemical shifts. We also show that the qu...
We present results from path integral molecular dynamics simulations that describe effects from the ...
We report the quantitative assessment of nuclear quantum effects on the strength of a single hydroge...
We outline a method to investigate the role of nuclear quantum effects in liquid water making use of...
In this work, we revisit the role of nuclear quantum effects on the structural and electronic proper...
In this work, we revisit the role of nuclear quantum effects on the structural and electronic proper...
In this work, we revisit the role of nuclear quantum effects on the structural and electronic proper...
Nuclear quantum effects influence the structure and dynamics of hydrogen-bonded systems, such as wat...
Nuclear quantum effects influence the structure and dynamics of hydrogen-bonded systems, such as wat...
We combine classical and ring polymer molecular dynamics simulations with the molecular jump model t...
Isotope substitution is extensively used to investigate the microscopic behavior of hydrogen bonded ...
International audienceWe combine classical and ring polymer molecular dynamics simulations with the ...
This thesis is concerned with the influence of nuclear quantum effects (NQEs) on the properties of a...
Isotope substitution is extensively used to investigate the microscopic behavior of hydrogen bonded ...
Nuclear quantum effects (NQEs) cause the nuclei of light elements like hydrogen to delocalize, affec...
The network connectivity in liquid water is revised in terms of electronic signatures of hydrogen bo...
We present results from path integral molecular dynamics simulations that describe effects from the ...
We report the quantitative assessment of nuclear quantum effects on the strength of a single hydroge...
We outline a method to investigate the role of nuclear quantum effects in liquid water making use of...
In this work, we revisit the role of nuclear quantum effects on the structural and electronic proper...
In this work, we revisit the role of nuclear quantum effects on the structural and electronic proper...
In this work, we revisit the role of nuclear quantum effects on the structural and electronic proper...
Nuclear quantum effects influence the structure and dynamics of hydrogen-bonded systems, such as wat...
Nuclear quantum effects influence the structure and dynamics of hydrogen-bonded systems, such as wat...
We combine classical and ring polymer molecular dynamics simulations with the molecular jump model t...
Isotope substitution is extensively used to investigate the microscopic behavior of hydrogen bonded ...
International audienceWe combine classical and ring polymer molecular dynamics simulations with the ...
This thesis is concerned with the influence of nuclear quantum effects (NQEs) on the properties of a...
Isotope substitution is extensively used to investigate the microscopic behavior of hydrogen bonded ...
Nuclear quantum effects (NQEs) cause the nuclei of light elements like hydrogen to delocalize, affec...
The network connectivity in liquid water is revised in terms of electronic signatures of hydrogen bo...
We present results from path integral molecular dynamics simulations that describe effects from the ...
We report the quantitative assessment of nuclear quantum effects on the strength of a single hydroge...
We outline a method to investigate the role of nuclear quantum effects in liquid water making use of...