论文著作:
(1) Peiyun Zhou, Xikang Zhao, Yang Song*, Ruixiang Ge*, Haohong Duan*, pH‐dependent electrochemical oxidation of 5‐hydroxymethylfurfural: Reaction mechanism, catalyst design, and reactor design across alkaline to acidic media, Smart Mol., 2025, DOI: 10.1002/smo2.70027.
(2) Peiyun Zhou, Xiang Liu, Zhuo Chen, Cheng Tang, Xikang Zhao, Jinyu Zheng*, Ruixiang Ge*, Haohong Duan*, Efficient electrooxidation of 5-hydroxymethylfurfural to 2,5-furandicarboxylic acid in a weak alkaline medium enabled by interfacial OH− enrichment, Adv. Funct. Mater., 2025, 35, 2502081.
(3) Peiyun Zhou, Haokun Pan, Guangtong Hai, Xiang Liu, Xiubing Huang*, Ge Wang*, Expediting *OH accumulation kinetics on metal-organic frameworks-derived CoOOH with CeO2 “accelerator” for electrocatalytic 5-hydroxymethylfurfural oxidation valorization, J. Energy Chem., 2024, 98, 721–732.
(4) Peiyun Zhou, Junjun Lv, Xiubing Huang*, Yunfeng Lu*, Ge Wang*, Strategies for enhancing the catalytic activity and electronic conductivity of MOFs-based electrocatalysts, Coord. Chem. Rev., 2023, 478, 214969.
(5) Peiyun Zhou, Guangtong Hai, Gongchi Zhao, Rushuo Li, Xiubing Huang*, Yunfeng Lu*, Ge Wang*, CeO2 as an “electron pump” to boost the performance of Co4N in electrocatalytic hydrogen evolution, oxygen evolution and biomass oxidation valorization, Appl. Catal. B-Environ., 2023, 325, 122364. (ESI高被引)
(6) Peiyun Zhou, Rushuo Li, Junjun Lv, Gongchi Zhao, Xiaowei Zhang, Xiubing Huang*, Yunfeng Lu*, Ge Wang*, Optimizing the electronic structure of CoNx via coupling with N-doped carbon for efficient electrochemical hydrogen evolution, J. Colloid Interface Sci., 2022, 628, 350–358.
(7) Peiyun Zhou, Linmeng Wang, Junjun Lv, Rushuo Li, Fengyu Gao, Xiubing Huang*, Yunfeng Lu*, Ge Wang*, Tuning the electronic structure of Co@N-C hybrids via metal-doping for efficient electrocatalytic hydrogen evolution reaction, J. Mater. Chem. A, 2022, 10, 4981–4991.
(8) Peiyun Zhou, Rushuo Li, Junjun Lv, Xiubing Huang*, Yunfeng Lu*, Ge Wang*, Synthesis of CoP nanoarrays by morphological engineering for efficient electrochemical hydrogen production, Electrochim. Acta, 2022, 426, 140768.