Advancing Calcium-Ion Batteries with a Novel Hydrated Eutectic Electrolyte
作者:Yuhan Wu, Xiaorui Hao, Xi Luo, Yu Ling, Hainan Li, Jiaqi Lv, Yinyan Guan, Lin Li, Pengfei Wang, Yuehong Zhang, Zhijie Wang, Chenglin Zhang, Jiyan Liang · 发表于:ChemRxiv · 年份:2026 · DOI:10.26434/chemrxiv-2025-hxjcm-v2 · 研究领域:Advancements in Battery Materials、Advanced battery technologies research、Advanced Battery Materials and Technologies
Ca-ion batteries (CIBs) have garnered significant attention in the past few years by virtue of their economic and physicochemical advantages, positioning them as a promising electrochemical energy storage technology in the post-lithium-ion battery era. However, the current research progress is insufficient, leaving this emerging field far from practical application, most of which focuses on developing high-performance electrode materials. Herein, we design a novel hydrated eutectic electrolyte (HEE) prepared by mixing Ca(ClO4)2·4H2O and acetamide at room temperature. The solvation structure of Ca2+ can be precisely regulated by controlling the molar ratio of the two chemical components. The HEE with optimal formulation features a wide electrochemical stability window, good ionic conductivity, appropriate viscosity, and a low melting point. Employing this novel HEE, a full CIB assembled with a PEDOT/V2O5 cathode and a PTCDI anode demonstrated outstanding electrochemical performance at room temperature (30 mAh·g−1 at 0.5 A·g−1 after 30,000 cycles) and environmental adaptability within a wide operating temperature range (−20 to 60 ℃). This work may not only provide a sustainable, safe, and cost-effective electrolyte for CIBs but also pave the way for the comprehensive development of CIBs.