首页> 外文期刊>Applied Surface Science >An earth-abundant, amorphous cobalt-iron-borate (Co-Fe-B_i) prepared on Ni foam as highly efficient and durable electrocatalysts for oxygen evolution
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An earth-abundant, amorphous cobalt-iron-borate (Co-Fe-B_i) prepared on Ni foam as highly efficient and durable electrocatalysts for oxygen evolution

机译:一种富含地球的无定形硼酸钴铁硼(Co-Fe-B_i),是在镍泡沫上制备的,是用于氧气释放的高效,耐用的电催化剂

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The rational designing of Earth-abundant, low-cost and efficient oxygen evolution reaction electrocatalysts is prerequisite to develop the alternative sustainable energy sources. In this work, we demonstrate the development of a highly efficient and durable electrocatalyst based on an amorphous Co-Fe-B-i directly grown on three-dimensional nickel foam via a facile solution approach. Co-Fe-B-i electrocatalysts on nickel foam exhibits an overpotential of similar to 307 mV to achieve the geometrical current density of 10 mA cm(-2), a low Tafel slope of similar to 68.6 mV dec(-1) and outstanding durability for 40 h at a mass loading of 1.2 mg cm(-2), which is superior to those of borate-based electrocatalysts reported in the literature This remarkable preliminary electrocatalytic performance in Co-Fe-B-i originates from the synergistic influence of unique binder-free ultra-thin nanosheets on the three dimensional porous structure, amorphous nature of multimetal-metalloid complex with highly abundant catalytically active sites and high conductivity of nickel foam. This work holds a great promise in the design and development of highly efficient and durable electrocatalysts at a large-scale based on an amorphous bimetallic borate nanosheets using a facile one-step solution process.
机译:合理设计富含地球,低成本和高效的析氧反应电催化剂是开发替代性可持续能源的先决条件。在这项工作中,我们演示了基于无定形Co-Fe-B-i的高效,耐用的电催化剂的开发,该无定形的Co-Fe-B-i通过简便的溶液方法直接在三维镍泡沫上生长。泡沫镍上的Co-Fe-Bi电催化剂表现出类似于307 mV的超电势,可实现10 mA cm(-2)的几何电流密度,类似于68.6 mV dec(-1)的低Tafel斜率以及出色的耐久性在质量载荷为1.2 mg cm(-2)的条件下运行40 h,优于文献中报道的基于硼酸盐的电催化剂。Co-Fe-Bi中出色的初步电催化性能源于独特的无粘结剂的协同作用三维多孔结构上的超薄纳米片,具有高度丰富的催化活性位和泡沫镍高电导率的多金属-类金属配合物的无定形性质。这项工作在基于无定形双金属硼酸盐纳米片的大规模高效高效耐用电催化剂的设计和开发中,具有广阔的前景,并采用了一种简便的一步法制备方法。

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