Can Ni complexes behave as molecular water oxidation catalysts?

dc.contributor.author
Garrido-Barros, Pablo
dc.contributor.author
Grau, Sergi
dc.contributor.author
Drouet, Samuel
dc.contributor.author
Benet-Buchholz, Jordi
dc.contributor.author
Gimbert- Suriñach, Carolina
dc.contributor.author
Llobet, Antoni
dc.date.accessioned
2019-04-08T09:17:04Z
dc.date.accessioned
2024-04-23T10:15:11Z
dc.date.available
2020-03-23T01:45:07Z
dc.date.available
2024-04-23T10:15:11Z
dc.date.issued
2019-03-24
dc.identifier.uri
http://hdl.handle.net/2072/353521
dc.description.abstract
The present report uncovers the borderline between homogeneous and heterogeneous water oxidation catalysis using a family of Ni complexes containing oxamidate anionic type of ligands. In particular, the Ni complex [(L1)NiII]2- (12-; L1 = o-phenylenebis(oxamidate)) and its modified analogues [(L2)NiII]2- (22- ;L2 = 4,5-dimethyl-1,2-phenylenebis(oxamidate)) and [(L3)NiII]2- (32- ;L2 = 4- methoxy-1,2-phenylenebis(oxamidate)) have been prepared and evaluated as molecular water oxidation catalysts at basic pH. Their redox features have been analyzed by mean of electrochemical measurements revealing a crucial involvement of the ligand in the electron transfer processes. Moreover, the stability of those complexes has been assessed both in solution and immobilized on graphene-based electrodes at different potentials and pHs. The degradation of the molecular species generates a NiOx layer, whose stability and activity as water oxidation catalyst has also been stablished. Electrochemical methods, together with surface characterization techniques, have shown the complex mechanistic scenario in water oxidation catalyzed by this family of Ni complexes, which consists of the coexistence of two catalytic mechanism: a homogeneous pathway driven by the molecular complex and a heterogeneous pathway based on NiOx. The electronic perturbations exerted through the ligand framework has manifested a strong influence over the stability of the molecular species under turnover conditions. Finally, 12- has been used as a molecular precursor for the formation of NiFeOx anodes that behave as extremely powerful water oxidation anodes.
dc.format.extent
3936 p.
cat
dc.language.iso
eng
cat
dc.rights
L'accés als continguts d'aquest document queda condicionat a l'acceptació de les condicions d'ús establertes per la següent llicència Creative Commons:http://creativecommons.org/licenses/by-nc-nd/4.0/
dc.source
RECERCAT (Dipòsit de la Recerca de Catalunya)
dc.subject.other
54
cat
dc.title
Can Ni complexes behave as molecular water oxidation catalysts?
cat
dc.type
info:eu-repo/semantics/article
cat
dc.type
info:eu-repo/semantics/acceptedVersion
cat
dc.embargo.terms
12 mesos
cat
dc.identifier.doi
https://doi.org/10.1021/acscatal.8b03953
dc.rights.accessLevel
info:eu-repo/semantics/openAccess


Documents

208_Pablo_ACSCatal_2019.pdf

1.746Mb PDF

This item appears in the following Collection(s)

Papers [1244]