首页> 外文期刊>ACS applied materials & interfaces >Ultrafine Mn3O4 Nanowires/Three-Dimensional Graphene/Single-Walled Carbon Nanotube Composites: Superior Electrocatalysts for Oxygen Reduction and Enhanced Mg/Air Batteries
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Ultrafine Mn3O4 Nanowires/Three-Dimensional Graphene/Single-Walled Carbon Nanotube Composites: Superior Electrocatalysts for Oxygen Reduction and Enhanced Mg/Air Batteries

机译:超细Mn3O4纳米线/三维石墨烯/单壁碳纳米管复合材料:卓越的电催化剂,可减少氧气并增强镁/空气电池

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The exploration of highly efficient catalysts for the oxygen reduction reaction to improve sluggish kinetics still remains a great challenge for advanced energy conversion and storage in metal/air batteries. In this work, ultrafine Mn3O4 nanowires/three-dimensional graphene/single-walled carbon nanotube catalysts with an electron transfer number of 3.95 (at 0.60 V vs Ag/AgCl) and kinetic current density of 21.7-28.8 mA cm(-2) were developed via a microwave-irradiation-assisted hexadecyl trimethylammonium bromide (CTAB) surfactant procedure to greatly enhance the overall catalytic performance in Mg/air batteries. To match the electrochemical activity of the cathode catalysts, a large-scale Mg anode prepared with micropersimmon-like particles via a mechanical disintegrator and Mg(NO3)(2)-NaNO2-based electrolyte containing 1.0 wt % trihexyl(tetradecyl)phosphonium chloride ionic liquid were applied. Combining the ultrafine Mn3O4 nanowires/three-dimensional graphene/single-walled carbon nanotube as an efficient electrocatalyst for the oxygen reduction reaction and an Mg micro-anoscale anode in the novel electrolyte, the advanced Mg/air batteries demonstrated a high cell open circuit voltage (1.49 V), a high plateau voltage (1.34 V), and a long discharge time (4177 min) at 0.2 mA cm(-1), showing a high energy density. Therefore, it is believed that this device configuration has great potential for application in new energy storage technologies.
机译:对于用于金属/空气电池中的高级能量转换和存储,探索用于氧还原反应以改善迟缓动力学的高效催化剂仍然是巨大的挑战。在这项工作中,超细Mn3O4纳米线/三维石墨烯/单壁碳纳米管催化剂的电子转移数为3.95(在0.60 V相对于Ag / AgCl的条件下),动电流密度为21.7-28.8 mA cm(-2)。通过微波辐照辅助十六烷基三甲基溴化铵(CTAB)表面活性剂工艺开发的Mg /空气电池,可大大增强镁电池/空气电池的总体催化性能。为了与阴极催化剂的电化学活性相匹配,通过机械崩解剂和类似柿子样的颗粒制备的大型Mg阳极和含有1.0 wt%的三己基(十四烷基)氯化离子的Mg(NO3)(2)-NaNO2基电解质液体。先进的Mg /空气电池将超细的Mn3O4纳米线/三维石墨烯/单壁碳纳米管(作为一种有效的氧还原反应电催化剂)与Mg微米/纳米级阳极相结合,显示出高开路电压(1.49 V),高平稳电压(1.34 V)和0.2 mA cm(-1)的较长放电时间(4177分钟),显示出高能量密度。因此,据信该设备配置具有在新的能量存储技术中应用的巨大潜力。

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