1、主要论文 [1] Yuhao Duan, Dehong Chen, Ruiyong Zhang, Yunmei Du*, Lei Wang⁎, Optimizing the coordination environment of active sites to enhance heterogeneous electrocatalytic performances, Coordination Chemistry Reviews 2025, 522, 216243. (IF=20.3) [2] Yunmei Du, Bin Li*, Lei Wang*. Recent advances in interface engineering strategy for highly‐efficient electrocatalytic water splitting, InfoMat 2022, e12377. (IF=25.405) [3] Jie Liu‡, Jinhong Ren, Yunmei Du*, Xiao Chen, Mengmeng Wang, Yanru Liu, Lei Wang*, V-doping strategy induces the construction of the functionally complementary Ru2P/V-RuP4 heterostructures to achieve amperometric current density for HER, Adv. Funct. Mater. 2024, 34,2315773. (IF=19.000) [4] Jie Liu, Xiaoli Sun, Yunmei Du*, Yanru Liu, Wenna Wang, Dehong Chen, Ruiyong Zhang, Lei Wang*, Ru-triggered domino effect constructs a local acid-like environment to achieve the ampere-level current density of a/c-Ru-FeP/IF electrode for alkaline HER, Appl. Catal. B: Environ. 2025, 366, 125030. (IF=20.2) [5] Jie Liu, Yunmei Du*, Xiaoli Sun, Shuangshuang Li, Yanru Liu, Lei Wang*, Phase transition of phosphide induced by a novel quenching N-doping strategy for optimizing overall water splitting kinetics, Nano Energy, 133, 2025, 110485. (IF=16.8) [6] Yilin Wang, Xiaoli Sun, Yunmei Du*, Shuangshuang Li, Mengmeng Wang, Yanru Liu, Lei Wang*, Quenching induces the co-introduction of O vacancies and N dopants in Co-RuO2 to promote ampere-level current density hydrogen production, Chem. Eng. J. 2024, 485, 149528. (IF=16.744) [7] Jinghan Xu, Jinhong Ren, Yunmei Du*, Yanru Liu, Dehong Chen, Ruiyong Zhang, Lei Wang*, One-step corrosion inducing the amorphous/crystalline-Co0.8Ru0.2/RuCoOx heterostructures for urea-assisted water decomposition at ampere-level current density, Chem. Eng. J. 2024, 498, 155291. (IF=16.744) [8] Jinhong Ren, Yunmei Du*, Yilin Wang, Shigang Zhao, Bo Yang, Bin Lig*, Lei Wang, Modulating amorphous/crystalline heterogeneous interface in RuCoMoyOx grown on nickel foam to achieve efficient overall water splitting, Chem. Eng. J 2023, 469, 143993. (IF=16.744) [9]Xiao Chen, Yunmei Du*, Yu Yang, Kang Liu, Jinling Zhao, Xiaodan Xia, Lei Wang*, Quenching to optimize the crystalline/amorphous ratio of CoPS nanorods for hydrazine-assisted total water decomposition at ampere-level current density, Chinese J. Catal, 2024, 62, 265–276. (IF=15.7) [10] Xiaoli Sun, Jie Liu, Yunmei Du*, Yanru Liu, Wenna Wang, Dehong Chen, Ruiyong Zhang, Lei Wang*, 2+1>3: Trimetallic Sites on the Zn-IrP2/FeP Electrode Trigger Synergistic Effect to Activate Industrial-Grade Performance for Hydrazine-Assisted Overall Water Splitting, ACS Catal., 2024, 14, 17421-17433. https://doi.org/10.1021/acscatal.4c05825(IF=11.3) 2、授权专利 [1] 一种销金属有机骨架材料及其制备方法和应用. ZL 2020 1 1036893. 7. [2]一种以导电碳布为基底的双金属硫化物的制备及其在锂离子电池负极方面的应用. ZL 2019 1 0623939.6. [3]一种多孔有机骨架材料及其制备方法和在选择性分离高铢酸根中的应用. ZL 2020 1 1036942. 7. [4]奥硝唑药物共晶及其制备方法 (澳大利亚革新专利). 2021105917. [5]一种电极材料钒酸钴、其制备方法及应用(卢森堡专利). LU500935. [6]一种微球状钒酸锌及其制备方法与应用(卢森堡专利). LU500937. [7]一种替硝唑有机药物超分子共晶及其制备方法(南非专利). 2022/00819. [8]温速冻处理的CoOx/CoP-L纳米薄片催化剂及其制备方法. 202211375315.5. [9]微波法控制晶型/无定形组分比例的RuCoMoOx催化剂的制备和应用. 202211361283.3. [10]一种核壳结构催化剂及其制备方法和应用. 202310220288.2. [11]一种Ru@HMCS/Ru-CoP催化剂及其制备方法和应用. 202310761172.X. |