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Boosting electrocatalytic water splitting via metal-metalloid combined modulation in quaternary Ni-Fe-P-B amorphous compound

机译:通过金属 - 金属化合物在季Ni-Fe-P-B-B-B非晶化合物中的金属 - 金属组合调节促进电催化水分解

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Design and synthesis of highly efficient and cost-effective bifunctional catalysts for hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) remain a big challenge. Herein, a quaternary amorphous nanocompound Ni-Fe-P-B has been synthesized by a facile, scalable co-reduction method. The Ni-Fe-P-B exhibits high electrocatalytic activity and outstanding durability for both HER and OER, delivering a current density of 10 mAcm(-2) at overpotentials of 220 and 269 mV, respectively. When loaded on carbon fiber paper (CFP) as a bifunctional catalyst, the Ni-Fe-P-B@CFP electrode requires a low cell voltage of 1.58 V to obtain 10 mAcm(-2) for overall water splitting with negligible recession over 60 h. The excellent catalytic performances of Ni-Fe-P-B mainly benefit from the metal-metalloid combined composition modulation and the unique amorphous structure. This work provides new insights into the design of robust bifunctional catalysts for water splitting, and may promote the development of multicomponent amorphous catalysts.
机译:用于高效且经济高效的双官能催化剂用于氢进化反应(她)和氧气进化反应(OER)的设计和合成仍然是一个很大的挑战。在此,通过容易的可伸缩的共减析方法合成了季型无定形纳米中相Ni-Fe-P-B。 Ni-Fe-P-B表现出高电催化活性和她们两者和伊尔的突出耐久性,分别在220和269mV的过电位下提供10mcm(-2)的电流密度。当在碳纤维纸(CFP)上作为双官能催化剂时,Ni-Fe-P-B @ CFP电极需要1.58V的低电池电压,以获得10mMM(-2),用于总水分,具有超过60小时的恢复劣质。 Ni-Fe-P-B的优异催化性能主要受益于金属 - 金属组合物调制和独特的无定形结构。这项工作为水分分裂的鲁棒双官能催化剂设计提供了新的见解,并且可以促进多组分非晶催化剂的发展。

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