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收藏Enhanced Performance of Protonic Ceramic Electrolysis Cells through a Machine-Learning-Designed Anode and an Optimized Half-Cell Preparation Process通过机器学习设计的阳极和优化的半电池制备工艺提升质子陶瓷电解池性能
Li, Xuan; Wang, Ning; Wang, Yanran; Xiang, Huanxin; Zheng, Fangyuan; Shi, Zhihang; Zou, Ziqiang; Tang, Chunmei; Meng, Ling; Du, Lei; Yuan, Baoyin; Ye, Siyu
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收藏Machine Learning Tailored Anodes for Efficient Hydrogen Energy Generation in Proton-Conducting Solid Oxide Electrolysis Cells用于在质子传导固体氧化物电解池中高效产生氢能的机器学习定制阳极
Zheng, Fangyuan; Yuan, Baoyin; Cai, Youfeng; Xiang, Huanxin; Tang, Chunmei; Meng, Ling; Du, Lei; Zhang, Xiting; Jiao, Feng; Aoki, Yoshitaka; Wang, Ning; Ye, Siyu
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收藏Microenvironment regulation to synthesize sub-3 nm Pt-based high-entropy alloy nanoparticles enabling compressed lattice to boost electrocatalysis微环境调控合成亚3纳米Pt基高熵合金纳米颗粒,使压缩晶格能够促进电催化
Huang, Zhiyin; Peng, Yuqin; Xing, Lixin; Xu, Mijia; Fang, Meng; Xie, Huiqi; Li, Jiamin; Zhou, Yangdong; Wu, Puwei; Wang, Ning; Tang, Chunmei; Wu, Mingjie; Wang, Liguang; Ye, Siyu; Du, Lei
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收藏Novel High-Entropy Air Electrodes Enhancing Electrochemical Performances of Reversible Protonic Ceramic Cells新型高熵空气电极增强可逆质子陶瓷电池的电化学性能
Zhang, XH; Tang, CM; Yang, YL; Zheng, FY; Su, QW; Xiang, HX; Meng, L; Du, L; Aoki, Y; Luo, DX; Wang, N; Ye, SY
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收藏Rationally Designed Air Electrode Boosting Electrochemical Performance of Protonic Ceramic Cells理性设计的空气电极增强质子陶瓷电池的电化学性能
Tang, CM; Yuan, BY; Zhang, XH; Zheng, FY; Su, QW; Meng, L; Du, L; Luo, DX; Aoki, Y; Wang, N; Ye, SY
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