International audienceSelf-assembled molecular iron and cobalt catalysts (MP4N2, M = Fe, Co) bearing a multihydroxy-functionalized tetraphosphine ligand electrocatalyze H2 generation from neutral water on a mercury electrode at −1.03 and −0.50 V vs. NHE, respectively. Complex CoP4N2 displays extremely low overpotential (Eonset = 80 mV) while maintaining high activity and good stability. Bulk electrolysis of CoP4N2 in a neutral phosphate buffer solution at −1.0 V vs. NHE produced 9.24 × 104 mol H2 per mol cat. over 20 h, with a Faradaic efficiency close to 100% and without apparent deactivation
International audienceThe viability of a hydrogen economy depends on the design of efficient catalyt...
International audienceThe viability of a hydrogen economy depends on the design of efficient catalyt...
The utilization of H 2 as fuel is considered as a potential solution for future energy demand, and t...
International audienceSelf-assembled molecular iron and cobalt catalysts (MP4N2, M = Fe, Co) bearing...
International audienceSelf-assembled molecular iron and cobalt catalysts (MP4N2, M = Fe, Co) bearing...
International audienceSelf-assembled molecular iron and cobalt catalysts (MP4N2, M = Fe, Co) bearing...
International audienceSelf-assembled molecular iron and cobalt catalysts (MP4N2, M = Fe, Co) bearing...
A cobalt complex with a tripyridine-diamine pentadentate ligand was found to be a highly active cata...
A cobalt complex with a tripyridine-diamine pentadentate ligand was found to be a highly active cata...
A cobalt complex with a tripyridine-diamine pentadentate ligand was found to be a highly active cata...
A cobalt complex with a tripyridine-diamine pentadentate ligand was found to be a highly active cata...
A cobalt complex with a tripyridine-diamine pentadentate ligand was found to be a highly active cata...
A cobalt complex with a tripyridine-diamine pentadentate ligand was found to be a highly active cata...
The viability of a hydrogen economy depends on the design of efficient catalytic systems based on ea...
[[sponsorship]]化學研究所[[note]]已出版;[SCI];有審查制度;具代表性[[note]]http://gateway.isiknowledge.com/gateway/Gate...
International audienceThe viability of a hydrogen economy depends on the design of efficient catalyt...
International audienceThe viability of a hydrogen economy depends on the design of efficient catalyt...
The utilization of H 2 as fuel is considered as a potential solution for future energy demand, and t...
International audienceSelf-assembled molecular iron and cobalt catalysts (MP4N2, M = Fe, Co) bearing...
International audienceSelf-assembled molecular iron and cobalt catalysts (MP4N2, M = Fe, Co) bearing...
International audienceSelf-assembled molecular iron and cobalt catalysts (MP4N2, M = Fe, Co) bearing...
International audienceSelf-assembled molecular iron and cobalt catalysts (MP4N2, M = Fe, Co) bearing...
A cobalt complex with a tripyridine-diamine pentadentate ligand was found to be a highly active cata...
A cobalt complex with a tripyridine-diamine pentadentate ligand was found to be a highly active cata...
A cobalt complex with a tripyridine-diamine pentadentate ligand was found to be a highly active cata...
A cobalt complex with a tripyridine-diamine pentadentate ligand was found to be a highly active cata...
A cobalt complex with a tripyridine-diamine pentadentate ligand was found to be a highly active cata...
A cobalt complex with a tripyridine-diamine pentadentate ligand was found to be a highly active cata...
The viability of a hydrogen economy depends on the design of efficient catalytic systems based on ea...
[[sponsorship]]化學研究所[[note]]已出版;[SCI];有審查制度;具代表性[[note]]http://gateway.isiknowledge.com/gateway/Gate...
International audienceThe viability of a hydrogen economy depends on the design of efficient catalyt...
International audienceThe viability of a hydrogen economy depends on the design of efficient catalyt...
The utilization of H 2 as fuel is considered as a potential solution for future energy demand, and t...