Zobrazeno 1 - 10
of 29
pro vyhledávání: '"Julien A. Panetier"'
Autor:
Sha Tamanna Sahil, Kaitlin M. McCardle, Pierre Le Magueres, Julien A. Panetier, Jonah W. Jurss
Publikováno v:
ACS Omega, Vol 9, Iss 32, Pp 34555-34566 (2024)
Externí odkaz:
https://doaj.org/article/f88cb6b6273048a2a2c910f7d185c37a
Publikováno v:
Materials Today Catalysis, Vol 5, Iss , Pp 100053- (2024)
The development of catalytic systems that selectively convert O2 to water is required to progress fuel cell technology. As an alternative to platinum catalysts, derivatives of iron and cobalt porphyrin molecular catalysts provide one benchmark for ca
Externí odkaz:
https://doaj.org/article/a79203b5c49d40a196d23cd2c5f97b7c
Autor:
Xiaohui Li, Julien A. Panetier
Publikováno v:
Topics in Catalysis. 65:325-340
Tungsten bipyridyl tetracarbonyl complexes were shown to reduce CO2 to CO in acetonitrile [Chem. Sci., 2014, 5, 1894–1900]. Here, we employ density functional theory (DFT) calculations to investigate the electronic structure and reactivity of a ser
Autor:
Julien A. Panetier, Xiaohui Li
Publikováno v:
ACS Catalysis. 11:12989-13000
Publikováno v:
ACS Catalysis. 11:11160-11170
Autor:
Xiaohui Li, Julien A. Panetier
Publikováno v:
Physical Chemistry Chemical Physics. 23:14940-14951
We have recently reported a series of imidazolium-functionalized manganese bipyridyl tricarbonyl electrocatalysts, [Mn[bpyMe(Im-R)](CO)3Br]+ (R = Me, Me2, and Me4), for CO2-to-CO conversion in the presence of H2O as the proton source [J. Am. Chem. So
Autor:
Martin Head-Gordon, David Z. Zee, Julien A. Panetier, Christopher J. Chang, Jeffrey R. Long, Matthias Loipersberger
Publikováno v:
Inorganic Chemistry. 59:8146-8160
A solar-driven conversion of CO2 into fuels by artificial photosynthesis would not only mitigate the greenhouse effect but also provide an alternative to obtain fuels in a renewable fashion. To this end, the new iron polypyridine catalyst [Fe(bpyNHEt
Publikováno v:
ACS Catalysis. 9:7398-7408
An original series of cobalt complexes bearing redox-active ligands based on bipyridyl-N-heterocyclic carbene donors has been developed for electrocatalytic CO2 reduction in acetonitrile and aqueou...
Autor:
Matthias, Loipersberger, David Z, Zee, Julien A, Panetier, Christopher J, Chang, Jeffrey R, Long, Martin, Head-Gordon
Publikováno v:
Inorganic chemistry. 59(12)
A solar-driven conversion of CO
Publikováno v:
Chemical Communications. 54:3351-3354
A series of nickel complexes featuring redox-active macrocycles is reported for electrocatalytic CO2 reduction. A remarkable structure–activity relationship is elucidated from the series through electrochemical studies and DFT calculations, wherein