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用于调节水系混合电池中水活性的聚丙烯酰胺基水凝胶电解质。

Polyacrylamide-based hydrogel electrolyte for modulating water activity in aqueous hybrid batteries.

作者信息

Rakhman Damira, Batyrbekuly Dauren, Myrzakhmetov Bauyrzhan, Zhumagali Karina, Issabek Kuralay, Sultan-Akhmetov Orazaly, Umirov Nurzhan, Konarov Aishuak, Bakenov Zhumabay

机构信息

National Laboratory Astana, Nazarbayev University Astana Kazakhstan.

Department of Chemical and Materials Engineering, School of Engineering and Digital Sciences, Nazarbayev University Astana Kazakhstan.

出版信息

RSC Adv. 2024 Dec 23;14(54):40222-40233. doi: 10.1039/d4ra07551j. eCollection 2024 Dec 17.

Abstract

While zinc-ion and hybrid aqueous battery systems have emerged as potential substitutes for expensive lithium-ion batteries, issues like side reactions, limited electrochemical stability, and electrolyte leakage hinder their commercialization. Due to their low cost, high stability, minimal leakage risks, and a wide variety of modification opportunities, hydrogel electrolytes are considered the most promising solution compared to liquid or solid electrolytes. Here, we synthesized a dual-function hydrogel electrolyte based on polyacrylamide and poly(ethylene dioxythiophene):polystyrene (PPP). This electrolyte reduces water content and enhances stability by minimizing side reactions while swelling in a binary ethylene glycol and water solution (EG 10%) further stabilizes the battery system. The developed hydrogel exhibits relatively good ionic conductivity (1.6 × 10 S cm) and excellent electrochemical stability, surpassing 2.5 V on linear sweep voltammetry tests. The PPP-based system reached a value of 119.2 mA g, while the aqueous electrolyte reached only 80.4 mA g specific capacity. The rechargeable PPP hydrogel electrolyte-based hybrid aqueous battery with zinc anode achieved more than 600 cycles. Coulombic efficiency (CE) remained at 99%, indicating good electrochemical reaction stability and reversibility. This study highlights the potential of polyacrylamide-based hydrogel electrolytes with dual functionality as the electrolyte and separator, inspiring further development in hydrogel electrolytes for aqueous battery systems. This study highlights the potential of polyacrylamide-based hydrogel electrolytes with dual functionality as the electrolyte and separator, inspiring further development in hydrogel electrolytes for aqueous battery systems.

摘要

虽然锌离子电池和混合水系电池系统已成为昂贵锂离子电池的潜在替代品,但诸如副反应、有限的电化学稳定性和电解液泄漏等问题阻碍了它们的商业化。由于水凝胶电解质成本低、稳定性高、泄漏风险小且有多种改性机会,与液体或固体电解质相比,它被认为是最有前景的解决方案。在此,我们合成了一种基于聚丙烯酰胺和聚(乙撑二氧噻吩):聚苯乙烯(PPP)的双功能水凝胶电解质。这种电解质通过减少副反应降低了含水量并提高了稳定性,同时在二元乙二醇和水溶液(10%乙二醇)中溶胀进一步稳定了电池系统。所开发的水凝胶表现出相对良好的离子电导率(1.6×10 S cm)和优异的电化学稳定性,在线性扫描伏安法测试中超过2.5 V。基于PPP的系统比容量达到119.2 mA g,而水系电解质仅达到80.4 mA g。基于可充电PPP水凝胶电解质的锌负极混合水系电池实现了600多次循环。库仑效率(CE)保持在99%,表明具有良好的电化学反应稳定性和可逆性。本研究突出了具有双功能的聚丙烯酰胺基水凝胶电解质作为电解质和隔膜的潜力,为水系电池系统的水凝胶电解质进一步发展提供了启发。本研究突出了具有双功能的聚丙烯酰胺基水凝胶电解质作为电解质和隔膜的潜力,为水系电池系统的水凝胶电解质进一步发展提供了启发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b7e/11664367/a3f85b592238/d4ra07551j-f1.jpg

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