Jiang Pengyang, Xu Yan, Gong Zhe, Ge Baoxin, Ding Luyao, Huang Caijin, Qiu Xiaoqing, Pei Zengxia
State Key Laboratory of Photocatalysis on Energy and Environment, College of Chemistry, Fuzhou University, Fuzhou, 350108, P.R. China.
College of Chemistry and Chemical Engineering, Central South University, Changsha, 410083, P.R. China.
Angew Chem Int Ed Engl. 2025 Jun 10;64(24):e202504188. doi: 10.1002/anie.202504188. Epub 2025 Apr 15.
Hybrid conversion Zn-air batteries (HC-ZABs) epitomize a typical integrated energy storage and conversion device that advances green chemistry and reduces carbon emissions. However, balancing efficiency and selectivity of electrocatalytic cathodic reactions remains the bottleneck in such batteries. Herein, we address this issue by designing a high-entropy perovskite, LaSrCaRbYCoO (HE-LCO), which outperforms conventional perovskites in offering enhanced electrocatalytic activity, better selectivity, and outstanding stability for cathodic benzyl alcohol oxidation reaction (BAOR). Combined spectroscopy characterizations, operando measurements, and theoretic calculations reveal that the entropy-driven modulation of the second coordination sphere in HE-LCO balances the adsorption of nucleophile benzyl alcohol and OH, while inhibiting competing oxygen evolution reaction (OER). Based on this rationalized HE-LCO electrocatalyst, HC-ZABs realized efficient energy storage and benzoic acid production, boasting a long lifespan of 900 cycles at 20 mA cm and 6.7 mAh cm per cycle. Further, practical ampere-hour-scale HC-ZABs demonstrated a 62.8% energy efficiency improvement and an average benzoic acid yield of 0.85 g per cycle, highlighting the potential of this integrated device for simultaneous sustainable energy storage and green electrochemical synthesis.
混合转换锌空气电池(HC-ZABs)是一种典型的集成储能和转换装置,它推动了绿色化学的发展并减少了碳排放。然而,平衡电催化阴极反应的效率和选择性仍然是这类电池的瓶颈。在此,我们通过设计一种高熵钙钛矿LaSrCaRbYCoO(HE-LCO)来解决这个问题,它在阴极苯甲醇氧化反应(BAOR)中表现出比传统钙钛矿更高的电催化活性、更好的选择性和出色的稳定性。结合光谱表征、原位测量和理论计算表明,HE-LCO中第二配位层的熵驱动调制平衡了亲核试剂苯甲醇和OH的吸附,同时抑制了竞争性析氧反应(OER)。基于这种合理设计的HE-LCO电催化剂,HC-ZABs实现了高效的能量存储和苯甲酸生产,在20 mA cm下具有900次循环的长寿命,每次循环容量为6.7 mAh cm。此外,实际安培小时级的HC-ZABs能量效率提高了62.8%,平均苯甲酸产量为每次循环0.85 g,突出了这种集成装置在同时进行可持续能量存储和绿色电化学合成方面的潜力。