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通过锌电池中的生物分子添加剂筛选对氢键相互作用和空间位阻进行同步调制

Synchronous Modulation of H-bond Interaction and Steric Hindrance via Bio-molecular Additive Screening in Zn Batteries.

作者信息

Guo Wenyi, Xu Liang, Su Yiwen, Zhao Liming, Ding Yifan, Zou Yuhan, Zheng Guangping, Cheng Tao, Sun Jingyu

机构信息

College of Energy, Soochow Institute for Energy and Materials Innovations, Jiangsu Provincial Key Laboratory for Advanced Carbon Materials and Wearable Energy Technologies, Soochow University, Suzhou, 215006, P. R. China.

Institute of Functional Nano and Soft Materials, Soochow University, Suzhou, 215123, P. R. China.

出版信息

Angew Chem Int Ed Engl. 2025 Jan 27;64(5):e202417125. doi: 10.1002/anie.202417125. Epub 2024 Nov 12.

Abstract

In addressing challenges such as side reaction and dendrite formation, electrolyte modification with bio-molecule sugar species has emerged as a promising avenue for Zn anode stabilization. Nevertheless, considering the structural variability of sugar, a comprehensive screening strategy is meaningful yet remains elusive. Herein, we report the usage of sugar additives as a representative of bio-molecules to develop a screening descriptor based on the modulation of the hydrogen bond component and electron transfer kinetics. It is found that xylo-oligosaccharide (Xos) with the highest H-bond acceptor ratio enables efficient water binding, affording stable Zn/electrolyte interphase to alleviate hydrogen evolution. Meanwhile, sluggish reduction originated from the steric hindrance of Xos contributes to optimized Zn deposition. With such a selected additive in hand, the Zn||ZnVO full cells demonstrate durable operation. This study is anticipated to provide a rational guidance in sugar additive selection for aqueous Zn batteries.

摘要

在应对诸如副反应和枝晶形成等挑战时,用生物分子糖类对电解质进行改性已成为稳定锌阳极的一条有前景的途径。然而,考虑到糖类结构的多变性,全面的筛选策略虽有意义但仍难以实现。在此,我们报道了使用糖类添加剂作为生物分子的代表,基于氢键组分和电子转移动力学的调制来开发一种筛选描述符。研究发现,具有最高氢键受体比例的木寡糖(Xos)能够实现高效的水结合,提供稳定的锌/电解质界面以减轻析氢。同时,源于Xos空间位阻的缓慢还原有助于优化锌沉积。有了这样一种选定的添加剂,锌||钒酸锌全电池展现出持久的运行性能。预计这项研究将为水系锌电池的糖类添加剂选择提供合理的指导。

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