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dc.contributor.authorReinhardt, Clorice R
dc.contributor.authorManetsch, Melissa T
dc.contributor.authorLi, Wan-Lu
dc.contributor.authorRomán-Leshkov, Yuriy
dc.contributor.authorHead-Gordon, Teresa
dc.contributor.authorKulik, Heather J
dc.date.accessioned2026-04-24T17:04:50Z
dc.date.available2026-04-24T17:04:50Z
dc.date.issued2024-07-25
dc.identifier.urihttps://hdl.handle.net/1721.1/165677
dc.description.abstractMetal–organic cages form well-defined microenvironments that can enhance the catalytic proficiency of encapsulated transition metal complexes (TMCs). We introduce a screening protocol to efficiently identify TMCs that are promising candidates for encapsulation in the Ga4L612– nanocage. We obtain TMCs from the Cambridge Structural Database with geometric and electronic characteristics amenable to encapsulation and mine the text of associated manuscripts to curate TMCs with documented catalytic functionality. By docking candidate TMCs inside the nanocage cavity and carrying out electronic structure calculations, we identify a subset of successfully optimized candidates (TMC-34) and observe that encapsulated guests occupy an average of 60% of the cavity volume, in line with previous observations. Notably, some guests occupy as much as 72% of the cavity as a result of linker rotation. Encapsulation has a universal effect on the electrostatic potential (ESP), systematically decreasing the ESP at the metal center of each TMC in the TMC-34 data set, while minimally altering TMC metal partial charges. Collectively these observations support geometry-based screening of potential guests and suggest that encapsulation in Ga4L612- cages could electrostatically stabilize diverse cationic or electropositive intermediates. We highlight candidate guests with associated known reactivity and solubility most amenable for encapsulation in experimental follow-up studies.en_US
dc.language.isoen
dc.publisherAmerican Chemical Societyen_US
dc.relation.isversionof10.1021/acs.inorgchem.4c02113en_US
dc.rightsArticle is made available in accordance with the publisher's policy and may be subject to US copyright law. Please refer to the publisher's site for terms of use.en_US
dc.sourceauthoren_US
dc.titleComputational Screening of Putative Catalyst Transition Metal Complexes as Guests in a Ga4L612– Nanocageen_US
dc.typeArticleen_US
dc.identifier.citationReinhardt, Clorice R, Manetsch, Melissa T, Li, Wan-Lu, Román-Leshkov, Yuriy, Head-Gordon, Teresa et al. 2024. "Computational Screening of Putative Catalyst Transition Metal Complexes as Guests in a Ga4L612– Nanocage." Inorganic Chemistry, 63 (31).
dc.contributor.departmentMassachusetts Institute of Technology. Department of Chemical Engineeringen_US
dc.contributor.departmentMassachusetts Institute of Technology. Department of Chemistryen_US
dc.relation.journalInorganic Chemistryen_US
dc.eprint.versionAuthor's final manuscripten_US
dc.type.urihttp://purl.org/eprint/type/JournalArticleen_US
eprint.statushttp://purl.org/eprint/status/PeerRevieweden_US
dc.date.updated2026-04-24T16:59:15Z
dspace.orderedauthorsReinhardt, CR; Manetsch, MT; Li, W-L; Román-Leshkov, Y; Head-Gordon, T; Kulik, HJen_US
dspace.date.submission2026-04-24T16:59:20Z
mit.journal.volume63en_US
mit.journal.issue31en_US
mit.licensePUBLISHER_POLICY
mit.metadata.statusAuthority Work and Publication Information Neededen_US


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