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dc.contributor.authorKandathil, V-
dc.contributor.authorSiddiqa, A-
dc.contributor.authorPatra, A-
dc.contributor.authorKulkarni, B-
dc.contributor.authorKempasiddaiah, M-
dc.contributor.authorSasidhar, BS-
dc.contributor.authorPatil, SA-
dc.contributor.authorRout, CS-
dc.contributor.authorPatil, SA-
dc.date.accessioned2021-05-22T12:43:05Z-
dc.date.available2021-05-22T12:43:05Z-
dc.date.issued2020-11-
dc.identifier.citationApplied Organometallic Chemistry;34(11): e5924.en_US
dc.identifier.urihttps://doi.org/10.1002/aoc.5924-
dc.identifier.urihttp://hdl.handle.net/123456789/3799-
dc.description.abstractN-heterocyclic carbene (NHC)-palladium(II) complex (GO@NHC-Pd) was synthesized on graphene oxide (GO) support via a simple and cost-effective multistep approach. The spectroscopic, microscopic, thermal, and surface analyses of GO@NHC-Pd confirmed the successful formation of the catalyst. The investigation of catalytic activity showed that GO@NHC-Pd was very effective in Suzuki-Miyaura as well as Hiyama cross-coupling. Being heterogeneous in nature, GO@NHC-Pd was recovered after each reaction cycle easily and reused for up to nine and six cycles in Suzuki-Miyaura and Hiyama cross-coupling, respectively, without significant loss of activity. Further exploration of the supercapacitor performance of GO@NHC-Pd catalyst assembled in a two-electrode cell configuration shown a maximum attained capacitance of 105.26 F/g at a current density of 0.1 A/g with good cycling stability of 96.89% over 2,500 cycles.en_US
dc.language.isoenen_US
dc.publisherWileyen_US
dc.subjectgraphene oxideen_US
dc.subjectHiyama cross-couplingen_US
dc.subjectN-heterocyclic carbene-palladium(II)en_US
dc.subjectsupercapacitoren_US
dc.subjectSuzuki-Miyaura cross-couplingen_US
dc.titleNHC-Pd Complex Heterogenized on Graphene Oxide for Cross-Coupling Reactions and Supercapacitor Applicationsen_US
dc.typeArticleen_US
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