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dc.date.accessioned 2020-10-28T18:45:12Z
dc.date.available 2020-10-28T18:45:12Z
dc.date.issued 2020
dc.identifier.uri http://sedici.unlp.edu.ar/handle/10915/107897
dc.description.abstract The electrochemical splitting of water holds promise for the storage of energy produced intermittently by renewable energy sources. The evolution of hydrogen currently relies on the use of platinum as a catalyst—which is scarce and expensive—and ongoing research is focused towards finding cheaper alternatives. In this context, 2D polymers grown as single layers on surfaces have emerged as porous materials with tunable chemical and electronic structures that can be used for improving the catalytic activity of metal surfaces. Here, we use designed organic molecules to fabricate covalent 2D architectures by an Ullmann-type coupling reaction on Au-(111). The polymer-patterned gold electrode exhibits a hydrogen evolution reaction activity up to three times higher than that of bare gold. Through rational design of the polymer on the molecular level we engineered hydrogen evolution activity by an approach that can be easily extended to other electrocatalytic reactions. en
dc.format.extent 8411-8415 es
dc.language en es
dc.subject density functional theory es
dc.subject hybrid catalyst es
dc.subject hydrogen evolution reaction es
dc.subject polymers es
dc.subject surface chemistry es
dc.title Enhancing Hydrogen Evolution Activity of Au(111) in Alkaline Media through Molecular Engineering of a 2D Polymer en
dc.type Articulo es
sedici.identifier.uri http://europepmc.org/backend/ptpmcrender.fcgi?accid=PMC7317855&blobtype=pdf es
sedici.identifier.uri https://onlinelibrary.wiley.com/doi/full/10.1002/anie.201915855 es
sedici.identifier.other pmid:32023355 es
sedici.identifier.other pmcid:PMC7317855 es
sedici.identifier.other https://doi.org/10.1002/anie.201915855 es
sedici.identifier.issn 1521-3773 es
sedici.creator.person Alexa, Patrick es
sedici.creator.person Lombardi, Juan Manuel es
sedici.creator.person Abufager, Paula es
sedici.creator.person Busnengo, Heriberto Fabio es
sedici.creator.person Grumelli, Doris Elda es
sedici.creator.person Vyas, Vijay S. es
sedici.creator.person Haase, Frederik es
sedici.creator.person Lotsch, Bettina V. es
sedici.creator.person Gutzler, Rico es
sedici.creator.person Kern, Klaus es
sedici.subject.materias Ciencias Exactas es
sedici.subject.materias Física es
sedici.subject.materias Química es
sedici.description.fulltext true es
mods.originInfo.place Facultad de Ciencias Exactas es
mods.originInfo.place Instituto de Investigaciones Fisicoquímicas Teóricas y Aplicadas es
sedici.subtype Comunicacion es
sedici.rights.license Creative Commons Attribution 4.0 International (CC BY 4.0)
sedici.rights.uri http://creativecommons.org/licenses/by/4.0/
sedici.description.peerReview peer-review es
sedici.relation.journalTitle Angewandte Chemie International Edition es
sedici.relation.journalVolumeAndIssue vol. 59, no. 22 es


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Creative Commons Attribution 4.0 International (CC BY 4.0) Excepto donde se diga explícitamente, este item se publica bajo la siguiente licencia Creative Commons Attribution 4.0 International (CC BY 4.0)