论文著作:
1.Xianda Wang(2024级硕士), Ruixue Wu, Ziming Zhang, Xiaoxia Li, Weifeng Huang, Hao Wang,* Hui Ying Yang*, andYang Shang*. Multiscale Characterization of Intrinsic Defects in Prussian White Cathodes: Bridging Defect Chemistry with Structure and Electrochemical Performance.Adv. Funct. Mater.2025, 35, 2521753.
2.Ruixue Wu(2023级硕士), Bo Ren, Xianda Wang, Xiaoxia Li, Jinlong Zheng, Hui Ying Yang*, andYang Shang*. Vacancy Remediation in Prussian Blue Analogs for High-Performance Sodium and Potassium Ion Batteries.Adv. Funct. Mater.2025, 35, 2418018.
3.Yang Shang, Zhichao Xu, Yifan Bao, Chaochao Fu, Gaoqiang Mao, Yi Zhao, Hui Ying Yang*, Jixue Shen*. Inhibiting Lattice Distortion of Ultrahigh Nickel Co-Free Cathode Material for Lithium-Ion Batteries.Nano Lett.2025, 25, 1845-1853.
4.Xiaoxia Li, Tianqi Guo,Yang Shang*, Tian Zheng, Binbin Jia, Xiaogang Niu, Yujie Zhu, Zhongchang Wang*. Interior-Confined Vacancy in Potassium Manganese Hexacyanoferrate for Ultra‐Stable Potassium‐Ion Batteries.Adv. Mater.2024, 36, 2310428.(ESI Highly Cited Paper)
5.Xiaoxia Li,Yang Shang*, Lu Guo, Dong Yan, Hui Ying Yang*. Topotactic-Epitaxy Self-Assembly of Potassium Manganese Hexacyanoferrate Superstructures for High Reversible Sodium-ion Batteries.ACS Nano2022, 16, 453-461.
6.Yang Shang, Xiaoxia Li, Jiajia Song, Shaozhuan Huang, Zhao Yang, Zhichuan Xu, Hui Ying Yang*. Unconventional Mn Vacancies in Mn–Fe Prussian Blue Analogs: Suppressing Jahn-Teller Distortion for Ultrastable Sodium Storage.Chem2020, 6, 1804-1818.(ESI Highly Cited Paper)
7.Yang Shang, Xiaoxia Li, Shaozhuan Huang, Song Chen, Zhao Yang, Lin Guo*, Hui Ying Yang*. A Selective Reduction Approach to Construct Robust Cu1.81S Truss-structures for High-Performance Sodium Storage.Matter2020, 2, 428.
8.Jie Lin,#Yang Shang,# Xiaoxia Li, Jian Yu, Xiaotian Wang, Lin Guo*. Ultrasensitive SERS Detection by Defect Engineering on Single Cu2O Superstructure Particle.Adv. Mater.2017, 29, 1604797. (#equal contribution)
9.Yang Shang, Yi-Ming Shao, Dong-Feng Zhang*, Lin Guo*. Recrystallization-Induced Self-Assembly for the Growth of Cu2O Superstructures.Angew. Chem. Int. Ed., 2014, 53, 11514.