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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >A metal free electrocatalyst for high-performance zinc-air battery application with good resistance towards poisoning species
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A metal free electrocatalyst for high-performance zinc-air battery application with good resistance towards poisoning species

机译:用于高性能锌空气电池应用的金属游离电催化剂,具有良好的中毒物种抵抗力

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摘要

The trace amount of poisoning species in air, such as SOx and NOx, greatly degrade the performance of zinc-air battery, as they block the active sites of conventional metal containing electrocatalysts. To overcome this challenge, a catalyst with enhanced electrocatalytic properties and good resistance towards the small molecular poisons should be prepared. In this work, we synthesized a P, N dual-doped porous carbon nanospheres (DDPCN), which showed an E-onset and E-1/2 of 0.98 V and 0.87 V for ORR reduction in alkaline solution, and a Tafel slop of 72 mV/dec, over-performing all the other metal-free catalysts and comparable with the performance of state-of-the-art Pt/C (20 wt%). Moreover, the E-1/2 for DDPCN showed negligible change towards poisoning species; while the E-1/2 for Pt/C and typical CoOx/CNTs displayed 10/10 mV and 24/13 mV decay by adding trace amount of SO32-/NO2- into the electrolyte solution. By using DDPCN as the electrocatalyst for zinc-air battery application, the device showed the highest open circuit voltage (1.48 V), the highest power density (224 mW cm(-2)) and the highest energy density (874 W h kg(-1)) among all metal-free catalysts, and their performances are even better than the Pt/C catalyst. Moreover, these performances showed negligible influence by the poisoning species for DDPCN based Zn-air battery, while the performances for Pt/C and CoOx/CNTs based Zn-air batteries were greatly deteriorated by the poisoning species up to 25% and 40%. (C) 2020 Published by Elsevier Ltd.
机译:空气中的痕量中毒物种,例如SOX和NOx,大大降低了锌 - 空气电池的性能,因为它们阻断了含有电催化剂的常规金属的活性位点。为了克服这一挑战,应制备具有增强的电催化性能和良好抗血液毒药抗性的催化剂。在这项工作中,我们合成了一种P,N双掺杂多孔碳纳米球(DDPCN),其显示碱性溶液中的ORR降低0.98V和0.87V的E-ONSET和0.87V的E-1/2,以及TAFEL SLOP 72mV / DEC,过度执行所有其他无金属催化剂,与最先进的Pt / C(20wt%)的性能相当。此外,DDPCN的E-1/2表现出对中毒物种的可忽略不计;当Pt / c的E-1/2和典型的COO / CNT通过将痕量的SO 3 2-/ NO2-添加到电解质溶液中显示10/10mV和24/13mV衰减。通过使用DDPCN作为锌 - 空气电池施用的电催化剂,该装置显示最高的开路电压(1.48 V),最高功率密度(224mW cm(-2))和最高能量密度(874WH kg( -1))在所有无金属催化剂中,它们的性能甚至比Pt / C催化剂更好。此外,这些性能显示了基于DDPCN的Zn空气电池的中毒物种的影响可忽略不计,而基于Pt / C和基于CNOS / CNT的性能的性能大大劣化,中毒物种高达25%和40%。 (c)2020年由elestvier有限公司发布

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