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基于内嵌钴/氮掺杂多孔碳三维石墨烯笼的抗团聚高效氧还原电催化剂 被引量:5
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作者 修陆洋 于梦舟 +2 位作者 杨鹏举 王治宇 邱介山 《电化学》 CAS CSCD 北大核心 2018年第6期715-725,共11页
氧还原反应是决定燃料电池、金属-空气电池等多种新型清洁能源存储与转化技术之性能与应用的关键反应.铂及其合金是目前催化活性最好的氧还原反应催化剂,但其高昂的成本限制了规模化应用.在小尺寸效应作用下,微纳米结构催化剂颗粒在电... 氧还原反应是决定燃料电池、金属-空气电池等多种新型清洁能源存储与转化技术之性能与应用的关键反应.铂及其合金是目前催化活性最好的氧还原反应催化剂,但其高昂的成本限制了规模化应用.在小尺寸效应作用下,微纳米结构催化剂颗粒在电极制备与电化学反应过程中的团聚限制了催化剂本征催化活性的充分发挥.本文基于喷雾热解技术,发展了一种基于内嵌钴/氮掺杂多孔碳三维石墨烯笼的高活性、抗团聚非贵金属氧还原反应催化剂.此结构中,金属有机骨架化合物ZIF-67衍生的钴/氮掺杂多孔碳纳米结构是催化氧还原反应的活性中心,包覆其外的三维石墨烯笼不仅可在钴/氮掺杂碳纳米结构之间构建连续的三维载流子传导网络,且可高效抑制其在催化剂制备与电化学反应过程中的团聚与活性损失.在碱性电解液中,此类非贵金属催化剂表现出可与铂基催化剂媲美的氧还原反应活性和优异的稳定性. 展开更多
关键词 氧还原反应 电催化剂 钴/氮掺杂碳 三维石墨烯 喷雾干燥
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Long life rechargeable Li-O_2 batteries enabled by enhanced charge transfer in nanocable-like Fe@N-doped carbon nanotube catalyst 被引量:4
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作者 于梦舟 周思 +5 位作者 刘洋 王治宇 周涛 赵纪军 赵宗彬 邱介山 《Science China Materials》 SCIE EI CSCD 2017年第5期415-426,共12页
Rechargeable Li-O2 batteries have attracted considerable interests because of their exceptional energy density. However, the short lifetime still remained as one of the bottle-neck obstacles for the practical applicat... Rechargeable Li-O2 batteries have attracted considerable interests because of their exceptional energy density. However, the short lifetime still remained as one of the bottle-neck obstacles for the practical application of rechargeable Li-O2 batteries. The development of efficient cathode catalyst is highly desirable to reduce the energy barrier of Li-O2 reaction and electrode failure. In this work, we report a facile strategy for the fabrication of a high-per- formance cathode catalyst for rechargeable Li-O2 batteries by the encapsulation of high content of active Fe nanorods into N-doped carbon nanotubes with high stability (denoted as Fe@NCNTs). First-principles calculations reveal that the synergistic charge transfer and redistribution between the interface of Fe nanorods, the CNT walls and the active N dopants greatly facilitate the chemisorption and subsequent dissociation of O2 molecules into the epoxy intermediates on the carbon surface, which benefits the uniform growth of nanosized discharge products on CNT surface and thus boosts the reversibility of Li-O2 reactions. As a result, the cathode with Fe@NCNT catalyst exhibRs long cycling sta- bility with high capacities (1000 mA h g-1 for 160 cycles and 600 mA h g-t for 270 cycles). Based on the total mass of Fe@NCNTs + Li2O2, high gravimetric energy densities of 2120-2600 W h kg-~ can be achieved at the power densities of 50-795 W kg-1. 展开更多
关键词 Li-O2battery cathodecatalyst N-dopedcarbonnan-otube Fe nanorods first-principles calculation
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