• Media type: E-Article
  • Title: PCMSolver: An open‐source library for solvation modeling
  • Contributor: Di Remigio, Roberto; Steindal, Arnfinn Hykkerud; Mozgawa, Krzysztof; Weijo, Ville; Cao, Hui; Frediani, Luca
  • imprint: Wiley, 2019
  • Published in: International Journal of Quantum Chemistry
  • Language: English
  • DOI: 10.1002/qua.25685
  • ISSN: 0020-7608; 1097-461X
  • Keywords: Physical and Theoretical Chemistry ; Condensed Matter Physics ; Atomic and Molecular Physics, and Optics
  • Origination:
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  • Description: <jats:title>Abstract</jats:title><jats:p><jats:sc>PCMSolver</jats:sc> is an open‐source library for continuum electrostatic solvation. It can be combined with any quantum chemistry code and requires a minimal interface with the host program, greatly reducing programming effort. As input, <jats:sc>PCMSolver</jats:sc> needs only the molecular geometry to generate the cavity and the expectation value of the molecular electrostatic potential on the cavity surface. It then returns the solvent polarization back to the host program. The design is powerful and versatile: minimal loss of performance is expected, and a standard single point self‐consistent field implementation requires no more than 2 days of work. We provide a brief theoretical overview, followed by two tutorials: one aimed at quantum chemistry program developers wanting to interface their code with <jats:sc>PCMSolver</jats:sc>, the other aimed at contributors to the library. We finally illustrate past and ongoing work, showing the library's features, combined with several quantum chemistry programs.</jats:p>