Publication:
Automated Identification of Relevant Frontier Orbitals for Chemical Compounds and Processes

dc.bibliographiccitation.firstpage170
dc.bibliographiccitation.issue4
dc.bibliographiccitation.journalCHIMIA International Journal for Chemistry
dc.bibliographiccitation.lastpage176
dc.bibliographiccitation.volume71
dc.contributor.authorStein, Christopher J.
dc.contributor.authorReiher, Markus
dc.date.accessioned2018-11-07T10:28:37Z
dc.date.available2018-11-07T10:28:37Z
dc.date.issued2017
dc.description.abstractQuantum-chemical multi-configurational methods are required for a proper description of static electron correlation, a phenomenon inherent to the electronic structure of molecules with multiple (near-)degenerate frontier orbitals. Here, we review how a property of these frontier orbitals, namely the entanglement entropy is related to static electron correlation. A subset of orbitals, the so-called active orbital space is an essential ingredient for all multi-configurational methods. We proposed an automated selection of this active orbital space, that would otherwise be a tedious and error prone manual procedure, based on entanglement measures. Here, we extend this scheme to demonstrate its capability for the selection of consistent active spaces for several excited states and along reaction coordinates.
dc.identifier.doi10.2533/chimia.2017.170
dc.identifier.isi000401690100004
dc.identifier.pmid28446330
dc.identifier.urihttps://resolver.sub.uni-goettingen.de/purl?gro-2/43460
dc.notes.statuszu prüfen
dc.notes.submitterPUB_WoS_Import
dc.publisherSwiss Chemical Soc
dc.relation.issn0009-4293
dc.titleAutomated Identification of Relevant Frontier Orbitals for Chemical Compounds and Processes
dc.typejournal_article
dc.type.internalPublicationyes
dc.type.peerReviewedyes
dc.type.statuspublished
dspace.entity.typePublication

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