A mechanochemical model for the simulation of molecules and molecular crystals under hydrostatic pressure
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Stauch_A mechanochemical model for the simulation of molecules and molecular crystals under hydrostatic pressure_2020_published-version.pdf | 1.34 MB | Adobe PDF | Anzeigen |
Autor/Autorin: | Stauch, Tim ![]() |
Zusammenfassung: | A novel mechanochemical method for the simulation of molecules and molecular crystals under hydrostatic pressure, the eXtended Hydrostatic Compression Force Field (X-HCFF) approach, is introduced. In contrast to comparable methods, the desired pressure can be adjusted non-iteratively and molecules of general shape retain chemically reasonable geometries even at high pressure. The implementation of... A novel mechanochemical method for the simulation of molecules and molecular crystals under hydrostatic pressure, the eXtended Hydrostatic Compression Force Field (X-HCFF) approach, is introduced. In contrast to comparable methods, the desired pressure can be adjusted non-iteratively and molecules of general shape retain chemically reasonable geometries even at high pressure. The implementation of the X-HCFF approach is straightforward, and the computational cost is practically the same as for regular geometry optimization. Pressure can be applied by using any desired electronic structure method for which a nuclear gradient is available. The results of the X-HCFF for pressure-dependent intramolecular structural changes in the investigated molecules and molecular crystals as well as a simple pressure-induced dimerization reaction are chemically intuitive and fall within the range of other established computational methods. Experimental spectroscopic data of a molecular crystal under pressure are reproduced accurately. |
Schlagwort: | Density Functional Theory; Electronic structure methods; Molecular geometry; Computational methods; Dimerization; Hydrostatics |
Veröffentlichungsdatum: | 1-Okt-2020 |
Zeitschrift/Sammelwerk: | The Journal of Chemical Physics |
Heft: | 13 |
Band: | 153 |
Dokumenttyp: | Artikel/Aufsatz |
ISSN: | 0021-9606 |
Zweitveröffentlichung: | yes |
Dokumentversion: | Published Version |
DOI: | 10.26092/elib/3672 |
URN: | urn:nbn:de:gbv:46-elib87627 |
Institution: | Universität Bremen |
Fachbereich: | Fachbereich 02: Biologie/Chemie (FB 02) |
Institut: | Institut für Physikalische und Theoretische Chemie |
Enthalten in den Sammlungen: | Forschungsdokumente |
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