New developments in the polarizable continuum model for quantum mechanical and classical calculations on molecules in solution
The polarizable continuum model (PCM), used for the calculation of molecular energies, structures, and properties in liquid solution has been deeply revised, in order to extend its range of applications and to improve its accuracy. The main changes effect the definition of solute cavities, of solvation charges and of the PCM operator added to the molecular Hamiltonian, as well as the calculation of energy gradients, to be used in geometry optimizations. The procedure can be equally applied to quantum mechanical and to classical calculations; as shown also with a number of numerical tests, this PCM formulation is very efficient and reliable. It can also be applied to very large solutes, since all the bottlenecks have been eliminated to obtain a procedure whose time and memory requirements scale linearly with solute size. The present procedure can be used to compute solvent effects at a number of different levels of theory on almost all the chemical systems which can be studied in vacuo.
Top-30
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143 publications, 6.31%
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103 publications, 4.55%
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45 publications, 1.99%
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Chemical Physics Letters
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33 publications, 1.46%
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32 publications, 1.41%
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Journal of Computational Chemistry
32 publications, 1.41%
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Computational and Theoretical Chemistry
31 publications, 1.37%
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Molecules
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Polyhedron
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Journal of Physical Chemistry C
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Tetrahedron
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European Journal of Inorganic Chemistry
23 publications, 1.02%
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American Chemical Society (ACS)
711 publications, 31.39%
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Elsevier
472 publications, 20.84%
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Wiley
377 publications, 16.64%
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Royal Society of Chemistry (RSC)
342 publications, 15.1%
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Springer Nature
155 publications, 6.84%
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AIP Publishing
56 publications, 2.47%
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MDPI
50 publications, 2.21%
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Taylor & Francis
24 publications, 1.06%
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World Scientific
7 publications, 0.31%
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7 publications, 0.31%
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Walter de Gruyter
5 publications, 0.22%
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Oxford University Press
4 publications, 0.18%
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Canadian Science Publishing
4 publications, 0.18%
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SAGE
4 publications, 0.18%
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King Saud University
4 publications, 0.18%
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IOP Publishing
4 publications, 0.18%
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3 publications, 0.13%
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Proceedings of the National Academy of Sciences (PNAS)
3 publications, 0.13%
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2 publications, 0.09%
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Radiation Research Society
2 publications, 0.09%
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American Association for the Advancement of Science (AAAS)
2 publications, 0.09%
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Hindawi Limited
2 publications, 0.09%
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Beilstein-Institut
1 publication, 0.04%
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American Physical Society (APS)
1 publication, 0.04%
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Bentham Science Publishers Ltd.
1 publication, 0.04%
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CSIRO Publishing
1 publication, 0.04%
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International Union of Crystallography (IUCr)
1 publication, 0.04%
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Portland Press
1 publication, 0.04%
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Institute of Organic Chemistry & Biochemistry
1 publication, 0.04%
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- We do not take into account publications without a DOI.
- Statistics recalculated weekly.