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Jan Hermann

Showing results (1-10 of 33) with videos related to

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The Journal of Chemical Physics|July 26, 2013
A novel correction scheme for DFT: a combined vdW-DF/CCSD(T) approachJan Hermann, Ota Bludský
Journal of Chemical Theory and Computation|February 16, 2018
Electronic Exchange and Correlation in van der Waals Systems: Balancing Semilocal and Nonlocal Energy ContributionsJan Hermann, Alexandre Tkatchenko
Physical Review Letters|April 28, 2020
Density Functional Model for van der Waals Interactions: Unifying Many-Body Atomic Approaches with Nonlocal FunctionalsJan Hermann, Alexandre Tkatchenko
Nature Communications|February 8, 2017
Nanoscale π-π stacked molecules are bound by collective charge fluctuationsJan Hermann, Dario Alfè, Alexandre Tkatchenko
Nature Chemistry|September 24, 2020
Deep-neural-network solution of the electronic Schrödinger equationJan Hermann, Zeno Schätzle, Frank Noé
The Journal of Chemical Physics|November 16, 2023
Variational principle to regularize machine-learned density functionals: The non-interacting kinetic-energy functionalPablo Del Mazo-Sevillano, Jan Hermann
The Journal of Chemical Physics|December 25, 2016
Communication: Many-body stabilization of non-covalent interactions: Structure, stability, and mechanics of Ag<sub>3</sub>Co(CN)<sub>6</sub> frameworkXiaofei Liu, Jan Hermann, Alexandre Tkatchenko
Chemical Reviews|March 9, 2017
First-Principles Models for van der Waals Interactions in Molecules and Materials: Concepts, Theory, and ApplicationsJan Hermann, Robert A DiStasio, Alexandre Tkatchenko
Frontiers in Oncology|January 6, 2025
Configuring thermal ablation volumes for treatment of distinct tumor shapes: a repeatability study using a robotic approachMilica Bulatović, Jan Hermann, Pascale Tinguely, et al.
Physical Review Letters|August 11, 2018
Phonon-Polariton Mediated Thermal Radiation and Heat Transfer among Molecules and Macroscopic Bodies: Nonlocal Electromagnetic Response at Mesoscopic ScalesPrashanth S Venkataram, Jan Hermann, Alexandre Tkatchenko, et al.
Pageof 4

Showing results (1-10 of 33) with videos related to

Sort By:
Pageof 4
The Journal of Chemical Physics|July 26, 2013
A novel correction scheme for DFT: a combined vdW-DF/CCSD(T) approachJan Hermann, Ota Bludský
Journal of Chemical Theory and Computation|February 16, 2018
Electronic Exchange and Correlation in van der Waals Systems: Balancing Semilocal and Nonlocal Energy ContributionsJan Hermann, Alexandre Tkatchenko
Physical Review Letters|April 28, 2020
Density Functional Model for van der Waals Interactions: Unifying Many-Body Atomic Approaches with Nonlocal FunctionalsJan Hermann, Alexandre Tkatchenko
Nature Communications|February 8, 2017
Nanoscale π-π stacked molecules are bound by collective charge fluctuationsJan Hermann, Dario Alfè, Alexandre Tkatchenko
Nature Chemistry|September 24, 2020
Deep-neural-network solution of the electronic Schrödinger equationJan Hermann, Zeno Schätzle, Frank Noé
The Journal of Chemical Physics|November 16, 2023
Variational principle to regularize machine-learned density functionals: The non-interacting kinetic-energy functionalPablo Del Mazo-Sevillano, Jan Hermann
The Journal of Chemical Physics|December 25, 2016
Communication: Many-body stabilization of non-covalent interactions: Structure, stability, and mechanics of Ag<sub>3</sub>Co(CN)<sub>6</sub> frameworkXiaofei Liu, Jan Hermann, Alexandre Tkatchenko
Chemical Reviews|March 9, 2017
First-Principles Models for van der Waals Interactions in Molecules and Materials: Concepts, Theory, and ApplicationsJan Hermann, Robert A DiStasio, Alexandre Tkatchenko
Frontiers in Oncology|January 6, 2025
Configuring thermal ablation volumes for treatment of distinct tumor shapes: a repeatability study using a robotic approachMilica Bulatović, Jan Hermann, Pascale Tinguely, et al.
Physical Review Letters|August 11, 2018
Phonon-Polariton Mediated Thermal Radiation and Heat Transfer among Molecules and Macroscopic Bodies: Nonlocal Electromagnetic Response at Mesoscopic ScalesPrashanth S Venkataram, Jan Hermann, Alexandre Tkatchenko, et al.
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