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Results: 77

E. Apra, E.J. Bylaska, W.A. De Jong, N. Govind, K. Kowalski, T.P. Straatsma, M. Valiev, H.J.J. van Dam, Y. Alexeev, J.L. Anchell, V. Anisimov, F. Aquino, R. Atta-Fynn, J. Autschbach, N.P. Bauman, J.C. Becca, D.E. Bernholdt, K. Bhaskaran-Nair, S. Bogatko, P. Borowski, J. Boschen, J. Brabec, A. Bruner, E. Cauet, Y. Chen, G.N. Chuev, C. Cramer, …, M. Swart, H.L. Taylor, G. Thomas, V. Tipparaju, D.G. Truhlar, K. Tsemekman, T. Van Voorhis, A. Vazquez-Mayagoitia, P. Verma, O. Villa, A. Vishnu, K. Vogiatzis, D. Wang, J. Weare, M.J. Williamson, T. Windus, K. Wolinski, A.T. Wong, Q. Wu, C. Yang, Q. Yu, M. Zacharias, Z. Zhang, Y. Zhao, R. Harrison
NWChem: Past, present, and future
J. Chem. Phys., 2020, 152, 184102-
DOI: 10.1063/5.0004997
Keywords: Computational chemistry, Density Functional Theory, Method development

Martí Gimferrer, Gerard Comas-Vilà, Pedro Salvador
Can We Safely Obtain Formal Oxidation States from Centroids of Localized Orbitals?
Molecules, 2020, 25, 234-
DOI: 10.3390/molecules25010234
Keywords: Chemical bonding, Computational chemistry, Method development, Real-space analysis

Pau Besalú-Sala, Sebastian P. Sitkiewicz, Pedro Salvador, Eduard Matito, Josep M. Luis
A new tuned range-separated density functional for the accurate calculation of second hyperpolarizabilities
Phys. Chem. Chem. Phys., 2020, 22, 11871-11880
DOI: 10.1039/D0CP01291B
Keywords: Computational chemistry, Density Functional Theory, Method development, Nonlinear optical properties, Spectroscopy

Alexander A. Voityuk, Sergei F. Vyboishchikov
Fast and accurate calculation of hydration energies of molecules and ions
Phys. Chem. Chem. Phys., 2020, 22, 14591-14598
DOI: 10.1039/d0cp02667k
Keywords: Computational chemistry, Density Functional Theory, Method development

Miroslav Medved’, Alex Iglesias-Reguant, Heribert Reis, Robert W. Góra, Josep M. Luis, Robert Zaleśny
Partitioning of interaction-induced nonlinear optical properties of molecular complexes. II. Halogen-bonded systems
Phys. Chem. Chem. Phys. , 2020, 22, 4225-4234
DOI: 10.1039/c9cp06620a
Keywords: Ab initio theory, Computational chemistry, Method development, Nonlinear optical properties, Spectroscopy

Marcel Swart
Bond orders in metalloporphyrins
Theor. Chem. Acc., 2020, 139, 160
DOI: 10.1007/s00214-020-02667-z
Keywords: Chemical bonding, Computational chemistry, Method development, Molecular similarity

Mauricio Rodríguez-Mayorga, Eloy Ramos-Cordoba, Xabier Lopez, Miquel Solà, Jesus M. Ugalde, Eduard Matito
The Coulomb Hole of the Ne Atom
ChemistryOpen, 2019, 8, 411-417
DOI: 10.1002/open.201800235
Keywords: Ab initio theory, Computational chemistry, Method development

Sergei F. Vyboishchikov, Alexander A. Voityuk
Iterative Atomic Charge Partitioning of Valence Electron Density
J Comput Chem, 2019, 40, 875-884
DOI: 10.1002/jcc.25771
Keywords: Ab initio theory, Chemical bonding, Computational chemistry, Method development, Real-space analysis

Robert Zaleśny, Miroslav Medved’, Sebastian P. Sitkiewicz, Eduard Matito, Josep M. Luis
Can Density Functional Theory Be Trusted for High-Order Electric Properties? The Case of Hydrogen-Bonded Complexes
J. Chem. Theory Comput., 2019, 15, 3570-3579
DOI: 10.1021/acs.jctc.9b00139
Keywords: Computational chemistry, Density Functional Theory, Method development, Nonlinear optical properties, Spectroscopy

Juan Andrés, Paul W. Ayers, Roberto A. Boto, Ramon Carbó-Dorca, Henry Chermette, Jerzy Cioslowski, Julia Contreras-García, DavidL. Cooper, Gernot Frenking, Carlo Gatti, Farnaz Heidar-Zadeh, Laurent Joubert, Ángel Martín Pendás, Eduard Matito, István Mayer, Alston J. Misquitta, Yirong Mo, Julien Pilmé, Paul L. A. Popelier, Martin Rahm, Eloy Ramos-Cordoba, Pedro Salvador, W. H. Eugen Schwarz, Shant Shahbazian, Bernard Silvi, Miquel Solà, Krzysztof Szalewicz, Vincent Tognetti, Frank Weinhold, Émilie-Laure Zins
Nine questions on energy decomposition analysis
J. Comput. Chem., 2019, 40, 2248-2283
DOI: 10.1002/jcc.26003
Keywords: Chemical bonding, Computational chemistry, Method development

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