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首页> 外文期刊>Electrochimica Acta >An ultrafast battery performing as a supercapacitor: Electrode tuning for high power performance
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An ultrafast battery performing as a supercapacitor: Electrode tuning for high power performance

机译:一种以超级电容器执行的超快电池:高功率性能的电极调谐

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In this work we present an ultrafast battery (UFB) based on olive pit derived hard carbon (HC) and LiNi1/3Mn1/3 Co1/3O2 (NMC111). In view of the faradaic nature of the active materials, the system should be catalogued as a battery. Nevertheless, the quadratic shape of the voltammograms demonstrates that the system can mimic supercapacitor performance, being able to respond to peak power demands in few seconds. Electrode engineering, by merely tailoring mass loading and mass balance, enabled such duality. On the one hand, at an operating voltage window of 2.9-3.75 V, the system is able to deliver 212 Wh.cm(-3 )at 1000 W.cm(-3) (respect to the active mass) within a discharge time of 10 min. On the other hand, the system can deliver 87 Wh.cm(-3) at 6000 W.cm(-3) within a discharge time of 32 s. In addition, the system shows capacity retention over 90% after 30 000 cycles at a current density of 1 A.g(-1) (t(discharge) = 32 s). This innovative design covers the existing gap between batteries and supercapacitors, resulting in an astonishing energy-to-power device that can rule out the electrochemical energy device scene. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在这项工作中,我们提出的超快电池基于橄榄坑(UFB)衍生的硬碳(HC)和的LiNi1 / 3Mn1 / 3 CO1 / 3O2(NMC111)。鉴于活性材料的游览性质,该系统应作为电池编目。然而,伏安图的二次形状表明,系统可以模拟超级电容器性能,能够在几秒钟内响应峰值功率需求。电极工程,仅仅通过剪裁大规模装载和质量平衡,使得这种二元性能够。一方面,在2.9-3.75 V的工作电压窗口,该系统能够在放电时间内以1000 W.CM(-3)(-3)(-3)(对主动质量)的递送212wh.cm(-3) 10分钟。另一方面,系统可以在32秒的放电时间内以6000 W.CM(-3)在3000WμCm(-3)中递送87wh.cm(-3)。此外,该系统在电流密度为1A.g(-1)(T(放电)= 32秒)后30 000个循环后的容量保持超过90%。这种创新设计涵盖了电池和超级电容器之间的现有差距,导致了可以排除电化学能量装置场景的惊人的能量 - 电源装置。 (c)2020 elestvier有限公司保留所有权利。

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