Efficient water electrolyzers are constrained by the lack of low-cost and earth-abundant hydrogen evolution reaction (HER) catalysts that can operate at industry-level conditions and be prepared with a facile process. Here we report a self-standing MoC-Mo2C catalytic electrode prepared via a one-step electro-carbiding approach using CO2 as the feedstock. The outstanding HER performances of the MoC-Mo2C electrode with low overpotentials at 500 mA cm-2 in both acidic (256 mV) and alkaline electrolytes (292 mV), long-lasting lifetime of over 2400 h (100 d), and high-temperature performance (70 oC) are due to the self-standing hydrophilic porous surface, intrinsic mechanical strength and self-grown MoC (001)-Mo2C (101) heterojunctions that have...
Optimizing interfacial contacts and thus electron transfer phenomena in heterogeneous electrocatalys...
Electrolysis of water by electricity generated from renewable energy sources is promising sustainabl...
Mo2C is a unique material due to its tunable phase and electronic structures. Because of the interac...
Scalable fabrication of Low-cost hydrogen evolution reaction (HER) catalysts that can operate at ind...
The efficiency of hydrogen production from electrolysis of water is severely limited by the sluggish...
© 2017 Elsevier Ltd The efficiency of hydrogen production from electrolysis of water is severely lim...
Water electrolysis provides a promising way to achieve sustainable hydrogen production, which strong...
Transition metal dichalcogenides (TMDs) are the auspicious inexpensive electrocatalysts for the hydr...
Demands for sustainable production of hydrogen are rapidly increasing because of environmental consi...
© 2015 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim. Mo2C is a well-known low cost catalyst for the hy...
Electrochemical water splitting is a promising approach to generate ‘green’ hydrogen. The efficiency...
The development of efficient hydrogen evolution and oxygen evolution reactions bifunctional electroc...
Durable electrolytic hydrogen production at high-current densities (\u3e500 mA cm-2) is required as ...
ater electrolysis is the most environmentally benign pathway to generate hydrogen. For water???alkal...
© 2019 Elsevier Ltd Generate hydrogen fuel from electrochemical water splitting has been considered ...
Optimizing interfacial contacts and thus electron transfer phenomena in heterogeneous electrocatalys...
Electrolysis of water by electricity generated from renewable energy sources is promising sustainabl...
Mo2C is a unique material due to its tunable phase and electronic structures. Because of the interac...
Scalable fabrication of Low-cost hydrogen evolution reaction (HER) catalysts that can operate at ind...
The efficiency of hydrogen production from electrolysis of water is severely limited by the sluggish...
© 2017 Elsevier Ltd The efficiency of hydrogen production from electrolysis of water is severely lim...
Water electrolysis provides a promising way to achieve sustainable hydrogen production, which strong...
Transition metal dichalcogenides (TMDs) are the auspicious inexpensive electrocatalysts for the hydr...
Demands for sustainable production of hydrogen are rapidly increasing because of environmental consi...
© 2015 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim. Mo2C is a well-known low cost catalyst for the hy...
Electrochemical water splitting is a promising approach to generate ‘green’ hydrogen. The efficiency...
The development of efficient hydrogen evolution and oxygen evolution reactions bifunctional electroc...
Durable electrolytic hydrogen production at high-current densities (\u3e500 mA cm-2) is required as ...
ater electrolysis is the most environmentally benign pathway to generate hydrogen. For water???alkal...
© 2019 Elsevier Ltd Generate hydrogen fuel from electrochemical water splitting has been considered ...
Optimizing interfacial contacts and thus electron transfer phenomena in heterogeneous electrocatalys...
Electrolysis of water by electricity generated from renewable energy sources is promising sustainabl...
Mo2C is a unique material due to its tunable phase and electronic structures. Because of the interac...