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LOBSTER: A tool to extract chemical bonding from plane‐wave based DFT

Journal of Computational Chemistry · 2016 · Vol. 37(11) · pp. 1030–1035
Stefan MaintzVolker L. DeringerAndrei L. TchougréeffRichard Dronskowski

Abstract

The computer program LOBSTER (Local Orbital Basis Suite Towards Electronic-Structure Reconstruction) enables chemical-bonding analysis based on periodic plane-wave (PAW) density-functional theory (DFT) output and is applicable to a wide range of first-principles simulations in solid-state and materials chemistry. LOBSTER incorporates analytic projection routines described previously in this very journal [J. Comput. Chem. 2013, 34, 2557] and offers improved functionality. It calculates, among others, atom-projected densities of states (pDOS), projected crystal orbital Hamilton population (pCOHP) curves, and the recently introduced bond-weighted distribution function (BWDF). The software is offered free-of-charge for non-commercial research. © 2016 The Authors. Journal of Computational Chemistry Published by Wiley Periodicals, Inc.

Advanced Chemical Physics StudiesCrystallography and molecular interactionsMachine Learning in Materials ScienceDensity functional theoryWave functionChemical bondPlane waveProjection (relational algebra)Computational chemistryPlane (geometry)Charge densityRange (aeronautics)Bond length

Funding

  • Deutsche Forschungsgemeinschaft
  • Studienstiftung des Deutschen Volkes
Citations
3,311
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70.20
field-weighted impact
References
62
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100%
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