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用于稳定柔性锌离子电池的多功能碳纳米管框架诱导的无枝晶锌沉积

Dendrite-Free Zinc Deposition Induced by Multifunctional CNT Frameworks for Stable Flexible Zn-Ion Batteries.

作者信息

Zeng Yinxiang, Zhang Xiyue, Qin Ruofei, Liu Xiaoqing, Fang Pingping, Zheng Dezhou, Tong Yexiang, Lu Xihong

机构信息

MOE of the Key Laboratory of Bioinorganic and Synthetic Chemistry, The Key Lab of Low-carbon Chem & Energy Conservation of Guangdong Province, School of Chemistry, Sun Yat-Sen University, Guangzhou, 510275, P. R. China.

School of Applied Physics and Materials, Wuyi University, Jiangmen, Guangdong, 529020, P. R. China.

出版信息

Adv Mater. 2019 Sep;31(36):e1903675. doi: 10.1002/adma.201903675. Epub 2019 Jul 25.

Abstract

The current boom of safe and renewable energy storage systems is driving the recent renaissance of Zn-ion batteries. However, the notorious tip-induced dendrite growth on the Zn anode restricts their further application. Herein, the first demonstration of constructing a flexible 3D carbon nanotube (CNT) framework as a Zn plating/stripping scaffold is constituted to achieve a dendrite-free robust Zn anode. Compared with the pristine deposited Zn electrode, the as-fabricated Zn/CNT anode affords lower Zn nucleation overpotential and more homogeneously distributed electric field, thus being more favorable for highly reversible Zn plating/stripping with satisfactory Coulombic efficiency rather than the formation of Zn dendrites or other byproducts. As a consequence, a highly flexible symmetric cell based on the Zn/CNT anode presents appreciably low voltage hysteresis (27 mV) and superior cycling stability (200 h) with dendrite-free morphology at 2 mA cm , accompanied by a high depth of discharge (DOD) of 28%. Such distinct performance overmatches most of recently reported Zn-based anodes. Additionally, this efficient rechargeability of the Zn/CNT anode also enables a substantially stable Zn//MnO battery with 88.7% capacity retention after 1000 cycles and remarkable mechanical flexibility.

摘要

当前安全且可再生的储能系统热潮推动了锌离子电池的再度兴起。然而,锌阳极上臭名昭著的尖端诱导枝晶生长限制了它们的进一步应用。在此,首次展示了构建一种柔性三维碳纳米管(CNT)框架作为锌电镀/剥离支架,以实现无枝晶的坚固锌阳极。与原始沉积的锌电极相比,所制备的锌/碳纳米管阳极具有更低的锌成核过电位和更均匀分布的电场,因此更有利于以令人满意的库仑效率进行高度可逆的锌电镀/剥离,而不是形成锌枝晶或其他副产物。结果,基于锌/碳纳米管阳极的高度柔性对称电池在2 mA cm² 时呈现出明显低的电压滞后(27 mV)和优异的循环稳定性(200 h),且具有无枝晶形态,同时伴有28%的高放电深度(DOD)。这种独特的性能超过了最近报道的大多数锌基阳极。此外,锌/碳纳米管阳极的这种高效可充电性还使得一个基本稳定的锌//二氧化锰电池在1000次循环后容量保持率为88.7%,并具有显著的机械柔韧性。

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