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Controllably Alloyed Low Density Free-standing Ni-Co and Ni-Graphene Sponges for Electrocatalytic Water Splitting

机译:可控合金化低密度独立式Ni-Co和Ni-石墨烯海绵用于电催化水分解

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摘要

Synthesis of low cost, durable and efficient electrocatalysts that support oxygen evolution reaction (OER) and hydrogen evolution reaction (HER) are the bottlenecks in water electrolysis. Here we propose a strategy for the development of controllably alloyed, porous, and low density nickel (Ni) and cobalt (Co) based alloys - whose electrocatalytic properties can be tuned to make them multifunctional. Ni and Co based alloy with the chemical structure of Ni1Co2 is identified as an efficient OER catalyst among other stoichiometric structures in terms of over potential @ 10 mAcm−2 (1.629 V), stability, low tafel slope (87.3 mV/dec), and high Faradaic efficiency (92%), and its OER performance is also found to be on par with the benchmarked IrO2. Tunability in the porous metal synthesis strategy allowed the incorporation of graphene during the Ni sponge formation, and the Ni- incorporated nitrogen doped graphene sponge (Ni-NG) is found to have very high HER activity. A water electrolysis cell fabricated and demonstrated with these freestanding electrodes is found to have high stability (>10 hours) and large current density (10 mAcm−2 @ 1.6 V), opening new avenues in the design and development of cost effective and light weight energy devices.
机译:支持氧气析出反应(OER)和氢气析出反应(HER)的低成本,耐用且高效的电催化剂的合成是水电解的瓶颈。在这里,我们提出了一种开发可控合金,多孔和低密度镍(Ni)和钴(Co)基合金的策略-可以调整其电催化性能以使其具有多功能性。具有Ni1Co2化学结构的Ni和Co基合金在10 mAcm −2 (1.629 V)处的过电势,稳定性,低tafel斜率( 87.3 mV / dec)和高法拉第效率(92%),其OER性能也与基准IrO2相当。多孔金属合成策略的可调性允许在Ni海绵形成过程中掺入石墨烯,并且发现掺Ni的氮掺杂石墨烯海绵(Ni-NG)具有很高的HER活性。用这些独立电极制造并演示的水电解槽具有高稳定性(> 10小时)和大电流密度(10 mAcm −2 @ 1.6 V),为设计和开发开辟了新途径。开发具有成本效益和重量轻的能源设备。

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