1.Lu Wang*, Nebojsa Marinkovic, Shyam Kattel, Bolun Yang*, and Jingguang G. Chen*. Insight into the synergistic effect between nickel and tungsten carbide for catalyzing urea electrooxidation in alkaline electrolyte[J]. Applied Catalysis B: Environmental 2018, 232: 365-370. (一区,IF: 24.319,国际顶级期刊,环境工程领域排名第一)
2.Yinuo Wang, Ke Zhang, Mingxing Zhou, Shijin Zhang, Ling Zhao, Gongjin Chen, Luca Magagnin, Lu Wang*, Yian Wang*, Minhua Shao*. Enriched and Sustained Oxygen Vacancies in Amorphous NiWOₓ Enhance and Stabilize Urea Electrooxidation[J]. Angewandte Chemie International Edition 2026, e2821661.(一区top,IF: 17.6)
3.Lu Wang*, Shangqian Zhu, Yian Wang, Zhipeng Liu, Yushen Liu, Qi Wang, Meng Gu, Kedi Li, Xianda Sun, Liwei Yang, Minhua Shao*. Amorphous nickel tungstate nanocatalyst boosts urea electrooxidation[J]. Chemical Engineering Journal 2023, 460: 141826. (一区top,IF: 15.1)
4.Lu Wang*, Zhipeng Liu, Shangqian Zhu, Minhua Shao, Bolun Yang*, and Jingguang G. Chen*. Tungsten carbide and cobalt modified nickel nanoparticles supported on MWCNTs as highly efficient electrocatalysts for urea oxidation in alkaline electrolyte. ACS Applied Materials & Interfaces 2018, 10 (48): 41338-41343. (一区,IF: 10.383)
5.Lu Wang, Elizabeth G. Mahoney, Shen Zhao, Bolun Yang*, Jingguang G. Chen*. Low loading of platinum on transition metal carbides for hydrogen oxidation and evolution reactions in alkaline electrolyte[J]. Chemical Communications 2016, 52(18): 3697-3700. (一区,IF: 6.065)
6.Lu Wang, Mingtao Li, Suitao Qi, Chunhai Yi, Bolun Yang*. Ni-WC/C nanocluster catalysts for urea electrooxidation. Journal of Power Sources 2014, 264: 282-289. (一区,IF: 9.794)
7.Lu Wang, Tingting Du, Jin Cheng, Bolun Yang*. Enhanced activity of urea electrooxidation on Ni catalysts supported on tungsten carbides/carbon nanotubes. Journal of Power Sources 2015, 280: 550-554. (一区,IF: 9.794)
8.Lu Wang, Tingting Du, Yanbo Pan, Mingtao Li, Bolun Yang*. Nickel-based Catalysts Supported on Carbon Materials for Urea Electrooxidation. The 6th International Symposium on Carbon for catalysis, Carbocat-VI. Trondheim, Norway, 2014, 6.
9.Mingtao Li*, Lu Wang, Bolun Yang. Facile preparation of polymer electrolytes based on the polymerizedionic liquid poly for lithium secondary batteries. Electrochimica Acta 2014, 123: 296-302. (IF: 7.336)
10.Peng Qiu, Lu Wang, Xuedong Jiang, and Bolun Yang*. Synthesis of Diethyl Carbonate by the Combined Process of Transesterification with Distillation. Energy & Fuels 2012, 26 (2): 1254-1258. (IF: 4.654)
11.Mingtao Li*, Lu Wang, Tingting Du. Preparation of Polymer Electrolytes Based on the Polymerized Imidazolium Ionic Liquid and Their Applications in Lithium Batteries. Journal of Applied Polymer Science 2014, 131: 40928. (IF: 3.057)
12.Kumar Siddharth, Yattung Chan, Lu Wang, Minhua Shao*. Ammonia electro-oxidation reaction: Recent development in mechanistic understanding and electrocatalyst design. Current Opinion in Electrochemistry 2018, 9: 151-157. (IF: 7.664)
13.Mingtao Li*, Bolun Yang, Lu Wang, Ying Zhang, Shaohua Fang. New polymerized ionic liquid (PIL) gel electrolyte membranes based on tetraalkylammonium cations for lithium ion batteries. Journal of Membrane Science 2013, 447: 222-227. (IF: 10.53)
14.Peng Zhang, Xiangyang Mao, Rongli Mi, Lu Wang, Bolun Yang*. Encapsulated phosphotungstic acid catalysts for alkylation desulfurization. Catalysis Letters 2021, 151, 95. (IF:2.936)
15.Mingtao Li*, Bolun Yang, Zhan Zhang, Lu Wang, Ying Zhang. Polymer gel electrolytes containing sulfur-based ionic liquids in lithium battery applications at room temperature. Journal of Applied Electrochemistry 2013, 43: 515-521. (IF: 2.384)
16.Ruiting Liu, Jiachen Wang, Yan Zhang, Lu Wang, Jingjing Zhan*, Baoxue Zhou*. Breaking the chlorine and oxygen evolution scaling relation via the selective shielding effect of oxophilic Ti sites[J]. Chemical Communications 2026, 62(49): 12318–12321.(IF: 4.3)
17.Filippo Zoia, Lu Wang, Roberto Bernasconi, Luca Magagnin. Direct Growth of Ni–Co-Based Catalysts via Electroprecipitation and Electroless Deposition for Efficient Urea Electro-Oxidation Reaction. The 250th ECS Meeting, Calgary, Canada, 2026.(国际会议报告)
15.王鹭*,田彦妮,张珂,袁立杰,赵晓红,杨伯伦.直接尿素燃料电池研究进展[J].化学工程2023,6(51):18-23.
16.王鹭*,田彦妮,张珂,袁立杰,赵晓红,杨伯伦.基于原位技术的尿素电氧化催化机理研究进展[J].化学工程,2024,52(01):70-75.
17.王鹭*,张珂,袁立杰,郭嘉玉,田彦妮.基于尿素电氧化技术的空间站新型污水回用系统设计[J].西北工业大学学报,2024,42(01):173-179.
18.田彦妮,袁立杰,张珂,赵晓红,杨伯伦,王鹭*.碳化钒改性镍基催化剂的尿素电氧化性能[J].化学工程,2024,52(06):18-22+28.
19.王鹭*,张珂,郭嘉玉,李宪硕,袁立杰,杨伯伦.尿素电氧化协同析氢反应双功能催化剂研究进展[J].化学工程,2024,52(10):25-3
20.张珂,郭嘉玉,周名星,赵凌,王鹭*等.一步法合成碳载钨酸镍催化剂的尿素电解制氢性能[J].化学工程,2025,53(03):1-6.
21.王鹭*,袁立杰,周名星,等.源分离尿液绿色处理及资源化利用研究进展[J].化学工程,2026,54(6):8-15.
22.王鹭*,郭嘉玉,赵凌,等.尿素电氧化钴基催化剂研究进展[J].化学工程,2026,54(2):14-19+57.