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用于高可逆性锌金属负极的“胶体中的阴离子”水合深共熔电解质

"Anions-in-Colloid" Hydrated Deep Eutectic Electrolyte for High Reversible Zinc Metal Anodes.

作者信息

Cheng Min, Li Diantao, Cao Junlun, Sun Tianjiang, Sun Qiong, Zhang Weijia, Zha Zhengtai, Shi Mengyao, Zhang Kai, Tao Zhanliang

机构信息

State Key Laboratory of Advanced Chemical Power Sources, Key Laboratory of Advanced Energy Materials Chemistry (Ministry of Education), Collaborative Innovation Center of Chemical Science and Engineering (Tianjin), Renewable Energy Conversion and Storage Center (RECAST), College of Chemistry, Nankai University, Tianjin, 300071, China.

Haihe Laboratory of Sustainable Chemical Transformations, Tianjin, 300192, China.

出版信息

Angew Chem Int Ed Engl. 2024 Oct 14;63(42):e202410210. doi: 10.1002/anie.202410210. Epub 2024 Sep 5.

Abstract

Zn metal as a promising anode for aqueous batteries suffers from severe zinc dendrites, anion-related side reactions, hydrogen evolution reaction (HER) and narrow electrochemical stable window (ESW). Herein, an "anions-in-colloid" hydrated deep eutectic electrolyte consisting of Zn(ClO) ⋅ 6HO, β-cyclodextrin (β-CD), and HO with mass ratio of 7 : 4.5 : 3 (ACDE-3) is designed to improve the stability of zinc anode. The ACDE-3 reconfigures the hydrogen-bond (HB) network and regulates the solvation shell. More importantly, the hydroxyl-rich β-cyclodextrins (β-CDs) in ACDE-3 self-assemble into micelles, in which the steric effect between adjacent β-CDs in micelles restricts the movement of anions. This unique "anions-in-colloid" structure enables the eutectic system with a high Zn transference number (t ) of 0.84. Thus, ACDE-3 inhibits the formation of dendrite, prevents the anion-involved side reactions, suppresses the HER, and enlarges the ESW to 2.32 V. The Zn//Zn symmetric cell delivers a long lifespan of 900 hours at 0.5 mA cm, and the Zn//Cu half cells have a high average columbic efficiency (ACE) of 97.9 % at 0.5 mA cm from cycle 15 to 200 with a uniform and compact zinc deposition. When matched with a poly(1,5-naphthalenediamine) (poly(1, 5-NAPD)) cathode, the full battery with a low negative/positive capacity (N/P) ratio of 2 can still cycle steadily for 200 cycles at a current density of 1.0 A g. Additionally, this electrolyte has been proven to be operative over a wide temperature range from -40 °C to 40 °C.

摘要

锌金属作为水系电池中有前景的负极,存在严重的锌枝晶、与阴离子相关的副反应、析氢反应(HER)以及较窄的电化学稳定窗口(ESW)。在此,设计了一种由Zn(ClO)·6H₂O、β-环糊精(β-CD)和H₂O组成的质量比为7∶4.5∶3的“胶体中阴离子”水合深共晶电解质(ACDE-3),以提高锌负极的稳定性。ACDE-3重新构建了氢键(HB)网络并调节溶剂化壳层。更重要的是,ACDE-3中富含羟基的β-环糊精(β-CDs)自组装成胶束,胶束中相邻β-CDs之间的空间位阻效应限制了阴离子的移动。这种独特的“胶体中阴离子”结构使共晶体系具有0.84的高锌迁移数(t₊)。因此,ACDE-3抑制枝晶形成,防止涉及阴离子的副反应,抑制析氢反应,并将电化学稳定窗口扩大到2.32 V。Zn//Zn对称电池在0.5 mA cm⁻²下可提供900小时的长寿命,Zn//Cu半电池在0.5 mA cm⁻²下从第15次循环到200次循环具有97.9%的高平均库仑效率(ACE),锌沉积均匀且致密。当与聚(1,5-萘二胺)(聚(1,5-NAPD))阴极匹配时,负/正容量(N/P)比低至2的全电池在1.0 A g⁻¹的电流密度下仍可稳定循环200次。此外,这种电解质已被证明在-40°C至40°C的宽温度范围内都能有效工作。

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