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Highly Active and Durable Transition Metal Oxide-Based Oxygen Electrode Catalysts for Unitized Reversible Fuel Cells

机译:基于高活性和耐用的过渡金属氧化物基氧电极催化剂,用于单位化可逆燃料电池

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Facing with the increasing environmental concerns for global warming and environmental pollutions, it is essential to develop renewable and sustainable energy sources to substitute traditional fossil fuel-based technologies. As a major candidate technology, unitized reversible fuel cells (URFCs) are recognized as a promising electrochemical energy conversion device due to their high energy efficiency and negligible carbon emissions. However, the low electrocatalytic activity related to the large overpotential loss for oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) is the key technical issue for the development of URFCs. Until now, precious metal-based catalysts (e.g., Pt/C, Ir/C, and IrO_2) have been used for OER and ORR in URFCs due to high electrocatalytic activity. Nevertheless, making commercialization of URFCs has hampered by the scarcity and limited durability of these materials. In order to solve these technical barriers, non-precious transition metal oxide based materials have considered as promising alternatives for bifunctional OER and ORR electrocatalysts because of their low cost, earth-abundance, and long-term stability. However, transition metal-based oxygen catalysts have several issues such as low electrical conductivity, small surface area, and low electroactivity. Herein, as main strategies to improve bifunctional electrocatalytic activity for OER and ORR, other transition metals are doped to increase intrinsic property of oxide materials with hybridizing with highly conductive carbonaceous materials as supporting material. The synthesized catalysts are analyzed by various physicochemical and electrochemical analysis tools.
机译:面对环境涉及全球变暖和环境污染的越来越多,必须开发可再生和可持续的能源,以替代传统的化石燃料技术。作为主要的候选技术,由于其高能量效率和可忽略不计的碳排放,将合形化可逆燃料电池(URFC)被认为是有前途的电化学能量转换装置。然而,与氧还原反应的大型过电损失相关的低电催化活性(ORR)和氧气进化反应(OER)是URFC发展的关键技术问题。到目前为止,由于高电催化活性,贵金属基催化剂(例如,Pt / C,Ir / C和IRO_2)已用于URFC中的OER和ORR。然而,通过这些材料的稀缺和有限的耐久性,使URFC的商业化受到阻碍。为了解决这些技术障碍,由于其低成本,大量和长期稳定性,非宝贵的过渡金属氧化物基材料已被认为是双功能oer和orr电催化剂的有前途的替代品。然而,过渡金属基氧催化剂具有若干问题,例如低电导率,表面积小和低电激性。在此,作为改善oer和Orr的双功能电催化活性的主要策略,其他过渡金属被掺杂以增加氧化物材料的固有性质,其用高导电碳质材料作为支撑材料杂交。通过各种物理化学和电化学分析工具分析合成催化剂。

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