Hierarchical tri-functional electrocatalysts derived from bimetallic-imidazolate framework for overall water splitting and rechargeable zinc-air batteries

被引:42
作者
Ahn, Sung Hoon [1 ,2 ]
Manthiram, Arumugam [1 ]
机构
[1] Univ Texas Austin, Texas Mat Inst, Mat Sci & Engn Program, Austin, TX 78712 USA
[2] Chosun Univ, Dept Biochem & Polymer Engn, Gwangju 501759, South Korea
基金
新加坡国家研究基金会;
关键词
N-DOPED CARBON; DOUBLE-HYDROXIDE NANOSHEETS; OXYGEN EVOLUTION; BIFUNCTIONAL ELECTROCATALYSTS; HYDROGEN EVOLUTION; EFFICIENT; NANOPARTICLES; GRAPHENE; REDUCTION; NITROGEN;
D O I
10.1039/c9ta01340g
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
There is a growing need for an efficient multi-functional electrocatalyst that can produce industry-level high currents at low overpotentials. Herein, we report a highly efficient, robust tri-functional catalytic electrode that simultaneously catalyzes three different electrochemical reactions: the oxygen evolution reaction (OER), hydrogen evolution reaction (HER), and oxygen reduction reaction (ORR). The catalytic electrodes with a hierarchical structure are converted from a hierarchical nickel-rich, nickel-cobalt bimetallic-imidazolate framework directly grown onto a nickel foam. Catalytic electrodes composed of bimetallic phosphides exhibit excellent OER and HER catalytic activity (an overpotential of 201/250 mV at 20/100 mA cm(-2) for OER and an overpotential of 67/110 mV at 20/100 mA cm(-2) for HER), as well as ORR activity with a half-wave potential at 0.82 V vs. RHE. Furthermore, the bimetal-nitrogen-carbon (M-N-C) catalytic electrode also exhibits tunable tri-functional catalytic activity, including excellent ORR activity with a half-wave potential at 0.88 V vs. RHE. The high potential of these multi-functional electrocatalysts from single nickel-rich bimetallic-organic complexes is demonstrated by employing them as robust alkaline water electrolyzers, as well as decoupled air electrodes for rechargeable zinc-air batteries (ZABs).
引用
收藏
页码:8641 / 8652
页数:12
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