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Microsolvation of small cations and anions

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Date
2018
Author
Hadad C.
Florez E.
Acelas N.
Merino G.
Restrepo A.

Citación

       
TY - GEN T1 - Microsolvation of small cations and anions AU - Hadad C. AU - Florez E. AU - Acelas N. AU - Merino G. AU - Restrepo A. Y1 - 2018 UR - http://hdl.handle.net/11407/4881 PB - John Wiley and Sons Inc. AB - Recent advances in the theoretical treatment of microsolvation of small ions, a problem with practical implications in chemistry, physics, and biology, are exposed. In particular, we discuss sound stochastic approaches to sample complex energy landscapes and delve into the nature of bonding interactions that dictate both structural and energetical preferences. An in-depth analysis of the effect of formal charges in the surrounding network of solvent to solvent hydrogen bonds is also presented. The problem, as expected, is more complicated than simple definitions may forecast. © 2018 Wiley Periodicals, Inc. ER - @misc{11407_4881, author = {Hadad C. and Florez E. and Acelas N. and Merino G. and Restrepo A.}, title = {Microsolvation of small cations and anions}, year = {2018}, abstract = {Recent advances in the theoretical treatment of microsolvation of small ions, a problem with practical implications in chemistry, physics, and biology, are exposed. In particular, we discuss sound stochastic approaches to sample complex energy landscapes and delve into the nature of bonding interactions that dictate both structural and energetical preferences. An in-depth analysis of the effect of formal charges in the surrounding network of solvent to solvent hydrogen bonds is also presented. The problem, as expected, is more complicated than simple definitions may forecast. © 2018 Wiley Periodicals, Inc.}, url = {http://hdl.handle.net/11407/4881} }RT Generic T1 Microsolvation of small cations and anions A1 Hadad C. A1 Florez E. A1 Acelas N. A1 Merino G. A1 Restrepo A. YR 2018 LK http://hdl.handle.net/11407/4881 PB John Wiley and Sons Inc. AB Recent advances in the theoretical treatment of microsolvation of small ions, a problem with practical implications in chemistry, physics, and biology, are exposed. In particular, we discuss sound stochastic approaches to sample complex energy landscapes and delve into the nature of bonding interactions that dictate both structural and energetical preferences. An in-depth analysis of the effect of formal charges in the surrounding network of solvent to solvent hydrogen bonds is also presented. The problem, as expected, is more complicated than simple definitions may forecast. © 2018 Wiley Periodicals, Inc. OL Spanish (121)
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Abstract
Recent advances in the theoretical treatment of microsolvation of small ions, a problem with practical implications in chemistry, physics, and biology, are exposed. In particular, we discuss sound stochastic approaches to sample complex energy landscapes and delve into the nature of bonding interactions that dictate both structural and energetical preferences. An in-depth analysis of the effect of formal charges in the surrounding network of solvent to solvent hydrogen bonds is also presented. The problem, as expected, is more complicated than simple definitions may forecast. © 2018 Wiley Periodicals, Inc.
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http://hdl.handle.net/11407/4881
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