Single-Ion Solvation
Experimental and Theoretical Approaches to Elusive Thermodynamic Quantities
Ions are ubiquitous in chemical, technological, ecological and biological processes. Characterizing their role in these processes in the first place requires the evaluation of the thermodynamic parameters associated with the solvation of a given ion. However, due to the constraint of electroneutrality, the involvement of surface effects and the ambiguous connection between microscopic and macroscopic descriptions, the determination of single-ion solvation properties via both experimental and theoretical approaches has turned out to be a very difficult and highly controversial problem. This unique book provides an up-to-date, compact and consi…
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Produktdetails
Weitere Autoren: Reif, Maria
- ISBN: 978-1-78262-496-7
- EAN: 9781782624967
- Produktnummer: 20512940
- Verlag: Royal Society of Chemistry
- Sprache: Englisch
- Erscheinungsjahr: 2015
- Plattform: EPUB
- Masse: 32'064 KB
- Auflage: 1. Auflage
Über den Autor
Philippe Hünenberger, previously Assistant Professor, is now a Senior Scientist at the Institute of Physical Chemistry, ETH Zürich (ETHZ). He completed his undergraduate studies at the University of Lausanne and his PhD at ETHZ followed by a period of time at UCSD, San Diego as a post-doctoral fellow. He has received numerous undergraduate and graduate awards including the Ruzicka Prize in 2008 and has been awarded a number of research grants. With countless published papers and oral presentations at key international conferences, he is regarded as a world renowned expert in his field. Maria Reif is at the Institute of Physical Chemistry, ETH Zürich (ETHZ). She completed her Bachelor studies at the Technische Universitõt, München and her Master studies in Molecular Modelling in the Theoretical Chemistry Group at the University of Cardiff. She recently finished her PhD in the Group for Computer-Assisted Chemistry at ETHZ. Her research interests are in the properties of single ions in solution (free energies of solvation and its derivative properties); parameterisation of ions against (methodology-independent) hydration free energies; testing of ion parameter sets to validate a value for the proton hydration free energy; asymmetric solvation effects in different solvents and approximate-electrostatics artefacts on charge-charge interactions.
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