[1] Zhang Xiaoting, Jiang Yiwei, Wang Tianzhi, Wang Chengjie, Wang Dongdong, Qiu Yu*, Zhang Yantu*, Defect-enhanced interface polarization in Mo2N/MoO3 heterostructures for efficient alkaline hydrogen evolution reaction and coupled power generation, Mater. Futures, 2026, 5, 015103. [2] Jiang Yiwei, Qiu Yu*, Zhang Yuwei, Liu Shuting, Li Xueli, Zhang Yantu, Zhang Xiaoting*, Electron transfer induced ruthenium-oxygen bond compression via d-band center tailoring for efficient acidic overall water splitting, J. Colloid Interf. Sci., 2026, 710, 140035. [3] Jiang Yiwei, Qiu Yu*, Zhang Xiaoting*, Cao Jiangbo, Zhang Yuwei, Wang Yu, Yang Zhenfeng, Li Xueli*, Zhang Yantu*, Cobalt and ruthenium co-doping activated molybdenum disulfide for alkaline electrocatalysis oxygen evolution reaction, Fuel, 2026, 404, 136247. [4] Qiu Yu*, Wang Tianzhi, Yu Yating, Cao Jiangbo, Wang Xinru, Zhan Zewei*, Zhang Xiaoting*, Activating bifunctional oxygen electrocatalytic activity of MoS2 via bimetallic doping for flexible zinc-air battery with self-supported N-doped carbon foam electrode, Mater. Res. Bull., 2026, 196, 113919. [5] Qiu Yu, Cao Jiangbo, Wang Jiaze, Ma Rong, Yu Yating, Zhang Xiaoting*, Sintering atmosphere modulated defect engineering in Na0.4K0.1Bi0.5TiO3-based relaxor ceramics toward temperature stable energy storage, Mater. Res. Bull., 2025, 191, 113563. [6] Zhang Xiaoting, Qiu Yu*, Guo Xiaohui*, Chang Jing, Zhang Yantu, Cao Jiangbo, Jiang Yiwei, Bai Jiale, Wang Wei, Tian Jianan, Li Xueli*, Interfacial Ru centers coupling with oxygen vacancies in VO-RuO2@CA hybrid aerogel boosts acidic water oxidation, Mol. Catal., 2024, 558, 114041. [7] Zhang Xiaoting, Ni Yang, Sun Xiuling, Jiang Yiwei, Wang Xinru, Qi Yu, Huang Jialong, Yu Fengshou, Li Xueli, Zhang Yantu, Qiu Yu*, Enhanced nitrogen electroreduction to ammonia activities on Sb2S3 electrocatalyst by sulfur defects coupled with carbon doping, Chem. Eng. Sci., 2024, 299, 120501. [8] Zhang Xina, Wu Daxiong*, Liu Xiangju, Qiu Yu, Liu Zhongli, Xie Haijiao, Duan Jizhou*, Hou Baorong, Efficient electrocatalytic chlorine evolution under neutral seawater conditions enabled by highly dispersed Co3O4 catalysts on porous carbon, Appl. Catal. B: Environ., 2023, 330, 122594. [9] Zhang Xiaoting, Zhao Lili, Qiu Yu, Wang Yan, Fan Yueyao, Liu Xueru, Cui Bin*, Achieving comprehensive temperature-stable energy storage properties in core-shell Na0.4K0.1Bi0.5TiO3@ (SrZrO3-BiMg0.5Sn0.5O3)@SiO2 ceramics via a multi-scale synergistic optimization, Chem. Eng. J., 2023, 462, 142251. [10] Qiu Yu, Rao Yifei, Zheng Yinan, Hu Hao, Zhang Wenhua*, Guo Xiaohui*, Activating ruthenium dioxide via compressive strain achieving efficient multifunctional electrocatalysis for Zn-air batteries and overall water splitting, InforMat, 2022, 4, e12326. [11] Qiu Yu, Liu Shuangquan, Wei Cong, Fan Jianxiong, Yao Hu, Dai Lanxin, Wang Gongming, Li Hong, Su Baolian*, Guo Xiaohui*, Synergistic effect between platinum single atoms and oxygen vacancy in MoO2 boosting pH-Universal hydrogen evolution reaction at large current density, Chem. Eng. J., 2022, 427, 131309. [12] Liu Shuangquan, Dai Lanxin, Qu Yunteng, Qiu Yu, Fan Jianxiong, Li Xue, Zhang Qinghua, Guo Xiaohui*, Crystalline/amorphous hetero-phase Ru nanoclusters for efficient electrocatalytic oxygen reduction and hydrogen evolution, Mater. Chem. Front., 2021, 5, 6648-6658. [13] Li Hailong, Li Hong, Qiu Yu, Liu Shuangquan, Fan Jianxiong, Guo Xiaohui*, Improving oxygen vacancies by cobalt doping in MoO2 nanorods for efficient electrocatalytic hydrogen evolution reaction, Nano Select, 2021, 2, 2148-2158. [14] Diao Jinxiang, Qiu Yu, Liu Shuangquan, Wang Weitao, Chen Kai, Li Hailong, Yuan Wenyu, Qu Yunteng, Guo Xiaohui*, Interfacial engineering of W2N/WC heterostructures derived from solid-state synthesis: a highly efficient trifunctional electrocatalyst for ORR, OER, and HER, Adv. Mater., 2020, 32, 1905679. [15] Yuan Wenyu, Wang Shiyao, Ma Yiyuan, Qiu Yu, An Yurong, Cheng Laifei*, Interfacial engineering of cobalt nitrides and mesoporous nitrogen-doped carbon: toward efficient overall water-splitting activity with enhanced charge-transfer efficiency, ACS Energy Lett., 2020, 5, 692-700. [16] Zhao Sen, Liu Hanxuan, Qiu Yu, Liu Shuangquan, Diao Jinxiang, Chang Chunran, Si Rui, Guo Xiaohui*, An oxygen vacancy-rich two-dimensional Au/TiO2 hybrid for synergistically enhanced electrochemical N2 activation and reduction, J. Mater. Chem. A, 2020, 8, 6586-6596. [17] Qiu Yu, Zhao Sen, Qin Mingxin, Diao Jinxiang, Liu Shuangquan, Dai Lanxin, Zhang Wenhua*, Guo Xiaohui*, Multi-yolk-shell bismuth@porous carbon as a highly efficient electrocatalyst for artificial N2 fixation under ambient conditions, Inorg. Chem. Front., 2020, 7, 2006-2016. [18] Qiu Yu, Wen Zhilin, Jiang Chaoran, Wu Xiaojun, Si Rui, Bao Jun, Zhang Qinghua, Gu Lin, Tang Junwang*, Guo Xiaohui*, Rational design of atomic layers of Pt anchored on Mo2C nanorods for efficient hydrogen evolution over a wide pH range, Small, 2019, 15, 1900014. [19] Diao Jinxiang, Yuan Wenyu, Qiu Yu, Cheng Laifei, Guo Xiaohui*, A hierarchical oxygen vacancy-rich WO3 with “nanowire-array-on-nanosheet-array” structure for highly efficient oxygen evolution reaction, J. Mater. Chem. A, 2019, 7, 6730-6739. [20] Qiu Yu, Chai Liying, Su Yi, Li Ping, Yuan Wenyu, Li Hailong, Guo Xiaohui*, One-dimensional hierarchical MoO2-MoSx hybrids as highly active and durable catalysts in the hydrogen evolution reaction, Dalton Trans., 2018, 47, 6041-6048. [21] Diao Jinxiang, Yuan Wenyu, Su Yi, Qiu Yu, Guo Xiaohui*, The rational design of Mo/MoC1−x nanorods as highly active electrocatalysts for hydrogen evolution reaction, Adv. Mater. Interfaces, 2018, 5, 1800223. |