Electrochemical approach to the mechanistic study of proton-coupled electron transfer
C Costentin - Chemical Reviews, 2008 - ACS Publications
The coupling between electron and proton transfers has a long experimental and theoretical
history in chemistry and biochemistry. To take just one example, the fact that acceptance of …
history in chemistry and biochemistry. To take just one example, the fact that acceptance of …
Molecular catalysts for hydrogen production from alcohols
M Trincado, D Banerjee, H Grützmacher - Energy & Environmental …, 2014 - pubs.rsc.org
An industrially applicable catalytic methodology for dihydrogen formation from a proton
source remains at the forefront of all efforts to replace the present fossil fuel economy by a …
source remains at the forefront of all efforts to replace the present fossil fuel economy by a …
Molecular catalysts that oxidize water to dioxygen
X Sala, I Romero, M Rodríguez… - Angewandte Chemie …, 2009 - Wiley Online Library
Water into oxygen: A good catalyst for converting water into oxygen is seen as an essential
part of any sustainable solar‐energy conversion scheme. Some success has been achieved …
part of any sustainable solar‐energy conversion scheme. Some success has been achieved …
The Ru− Hbpp water oxidation catalyst
F Bozoglian, S Romain, MZ Ertem… - Journal of the …, 2009 - ACS Publications
A thorough characterization of the Ru− Hbpp (in, in-{[RuII (trpy)(H2O)] 2 (μ-bpp)} 3+(trpy is 2,
2′: 6′, 2′′-terpyridine, bpp is bis (2-pyridyl)-3, 5-pyrazolate)) water oxidation catalyst …
2′: 6′, 2′′-terpyridine, bpp is bis (2-pyridyl)-3, 5-pyrazolate)) water oxidation catalyst …
Reversible catalytic dehydrogenation of alcohols for energy storage
PJ Bonitatibus Jr, S Chakraborty… - Proceedings of the …, 2015 - National Acad Sciences
Reversibility of a dehydrogenation/hydrogenation catalytic reaction has been an elusive
target for homogeneous catalysis. In this report, reversible acceptorless dehydrogenation of …
target for homogeneous catalysis. In this report, reversible acceptorless dehydrogenation of …
Enhancing Photoredox Catalysis in Aqueous Environments: Ruthenium Aqua Complex Derivatization of Graphene Oxide and Graphite Rods for Efficient Visible-Light …
S Affès, AM Stamatelou, X Fontrodona… - … applied materials & …, 2023 - ACS Publications
A ruthenium aqua photoredox catalyst has been successfully heterogeneneized on
graphene oxide (GO@ trans-fac-3) and graphite rods (GR@ trans-fac-3) for the first time and …
graphene oxide (GO@ trans-fac-3) and graphite rods (GR@ trans-fac-3) for the first time and …
Determining overpotentials for the oxidation of alcohols by molecular electrocatalysts in non-aqueous solvents
AL Speelman, JB Gerken, SP Heins… - Energy & …, 2022 - pubs.rsc.org
Molecular electrocatalysts for energy-related transformations offer unique opportunities to
elucidate mechanistic principles that contribute to improved rates and energy efficiency …
elucidate mechanistic principles that contribute to improved rates and energy efficiency …
Transition metal complexes as electrocatalysts—development and applications in electro-oxidation reactions
KC Cheung, WL Wong, DL Ma, TS Lai… - Coordination Chemistry …, 2007 - Elsevier
In this review, the utilization of coordination compounds as electrocatalysts in a number of
electro-oxidation reactions including oxidation of olefins, alcohols, water, glucose, nitric …
electro-oxidation reactions including oxidation of olefins, alcohols, water, glucose, nitric …
Ru complexes that can catalytically oxidize water to molecular dioxygen
I Romero, M Rodríguez, C Sens, J Mola… - Inorganic …, 2008 - ACS Publications
The main objective of this review is to give a general overview of the structure,
electrochemistry (when available), and catalytic performance of the Ru complexes, which …
electrochemistry (when available), and catalytic performance of the Ru complexes, which …
Update 1 of: Electrochemical approach to the mechanistic study of proton-coupled electron transfer
C Costentin, M Robert, JM Savéant - Chemical reviews, 2010 - pubmed.ncbi.nlm.nih.gov