个人简介:
陈润喆,男,7003全讯白菜网址、讲师,主要研究方向为功能纳米材料的合成及在电化学能源存储和转换中的应用研究。近五年来在ACS Energy Letters, ACS Catalysis等国际期刊上发表论文19篇,参与科研项目2项,申请中国专利2项。
教育经历:
2013.09-2017.06 南京邮电大学 高分子材料与工程 本科
2017.09-2019.06 福州大学 材料物理与化学 硕士
2019.09-2023.12 福州大学 材料学 博士
主要参与的项目:
1. 福建省科技厅,高校产学合作项目,高活性和耐久性铂基氢燃料电池催化剂的开发及产业化,2021H6020,参与;
2. 福建省海洋传感功能材料重点实验室(7003全讯论坛),开放基金项目,调控金属-载体间相互作用构筑高效过氧化氢电化学传感器,MJUKF-FMSM202015,参与。
主要成果
发表论文:
1. Runzhe Chen, Zichen Wang, Suhao Chen, Wei Wu, Yu Zhu, Jun Zhong*, Niancai Cheng*. Activating Lattice Oxygen in Spinel Oxides via Engineering Octahedral Sites for Oxygen Evolution. ACS Energy Letters 2023, 8, 3504–3511. (IF=22.000)
2. Runzhe Chen, Yunkai Yang, Wei Wu, Suhao Chen, Zichen Wang, Yu Zhu, Niancai Cheng*. Reconstructed β-NiOOH enabling highly efficient and ultrastable oxygen evolution at large current density. Chemical Engineering Journal 2024, 480: 148100. (IF=15.100)
3. Runzhe Chen, Zeyi Zhang, ZiChen Wang, Wei Wu, Shaowu Du, Wangbin Zhu, Haifeng Lv*, Niancai Cheng*. Constructing Air-Stable and Reconstruction-Inhibited Transition-Metal-Sulfide Catalysts via Tailoring Electron-Deficient Distribution for Water Oxidation. ACS Catalysis 2022, 12, 13234-13246. (IF=12.900)
4. Runzhe Chen, Yangyang Tan, Zeyi Zhang, Zhao Lei, Wei Wu, Niancai Cheng*, Shichun Mu*. Hydrazine Hydrate Induced Two-Dimensional Porous Co3+ Enriched Co3O4 Nanosheets for Enhanced Water Oxidation Catalysis. ACS Sustainable Chemistry & Engineering 2020, 8, 9813-982. (IF=8.400)
5. Runzhe Chen, Zichen Wang, Suhao Chen, Liang Wang, Wei Wu, Yu Zhu, Niancai Cheng*. Optimizing Intermediate Adsorption on Pt Sites via Triple-Phase Interface Electronic Exchange for Methanol Oxidation. Inorganic chemistry 2024, 10.1021/acs.inorgchem.3c04634. (IF=4.600)
6. Wei Wu, Runzhe Chen, Suhao Chen, Zichen Wang, Niancai Cheng*.Optimizing d-Orbital Electronic Configuration via Metal–Metal Oxide Core–Shell Charge Donation for Boosting Reversible Oxygen Electrocatalysis. Small 2023 19, 2300621. (IF=13.300)
7. Fei Guo, Zeyi Zhang, Runzhe Chen, Yangyang Tan, Wei Wu, Zichen Wang, Tang Zeng, Wangbin Zhu, Caoxin Lin, Niancai Cheng*, Dual roles of sub-nanometer NiO in alkaline hydrogen evolution reaction: breaking the Volmer limitation and optimizing d-orbital electronic configuration. Materials Horizons 2023, 10, 2913-2920. (IF=13.300)
8. Yu Zhu, Shunqiang Zhang, Runzhe Chen, Zichen Wang, Wei Wu, Haoran Jiang, Heyuan Chen, Niancai Cheng*. Controllable Electronic Transfer Tailoring d‐band Center via Cobalt–Oxygen‐Bridged Ru/Fe Dual‐sites for Boosted Oxygen Evolution. Small 2024, 10.1002/smll.202310611. (IF=13.300)
9. Yandong Wang, Wei Wu, Runzhe Chen, Caoxin Lin, Shichun Mu*, Niancai Cheng*. Reduced water dissociation barrier on constructing Pt-Co/CoOx interface for alkaline hydrogen evolution. Nano Research 2022, 15, 4958-4964. (IF=9.900)
10. Zichen Wang, Suhao Chen, Wei Wu, Runzhe Chen, Yu Zhu, Haoran Jiang, Liyue Yu, Niancai Cheng*. Tailored Lattice Compressive Strain of Pt-skins by the L12-Pt3M Intermetallic Core for Highly Efficient Oxygen Reduction. Advanced Materials 2023, 35, 2301310. (IF=29.400)
11. Ming Zheng, Junzhe Zhao, Wei Wu, Runzhe Chen, Suhao Chen, Niancai Cheng*. Co/CoS2 Heterojunction Embedded in N, S-Doped Hollow Nanocage for Enhanced Polysulfides Conversion in High-Performance Lithium–Sulfur Batteries. Small 2023, 20, 2303192. (IF=13.300)
12. Caoxin Lin, Zhiqiao Huang, Zeyi Zhang, Tang Zeng, Runzhe Chen, Yangyang Tan, Wei Wu, Shichun Mu*, Niancai Cheng*. Structurally Ordered Pt3Co Nanoparticles Anchored on N‑Doped Graphene for Highly Efficient Hydrogen Evolution Reaction. ACS Sustainable Chemistry & Engineering 2020, 8, 16938-16945. (IF=8.400)
13. Yangyang Tan, Wangbin Zhu, Zeyi Zhang, Wei Wu, Runzhe Chen, Shichun Mu, Haifeng Lv*, Niancai Cheng*. Electronic tuning of confined sub-nanometer cobalt oxide clusters boosting oxygen catalysis and rechargeable Zn–air batteries. Nano Energy 2021 83, 105813. (IF=17.600)
14. Zeyi Zhang, Yangyang Tan, Tang Zeng, Liyue Yu, Runzhe Chen, Niancai Cheng*, Shichun Mu*, Xueliang Sun*. Tuning the dual-active sites of ZIF-67 derived porous nanomaterials for boosting oxygen catalysis and rechargeable Zn-air batteries, Nano Research 2021, 14(7), 2353-2362. (IF=9.900)
15. Heyuan Chen, Wei Wu, Suhao Chen, Zichen Wang, Runzhe Chen, Niancai Cheng*. Tailoring the d-band center of porous CoS2 nanospheres via low-electronegative Fe for weakened OH* adsorption and boosted oxygen evolution, Inorganic Chemistry Frontiers 2023, 10, 5668-5677. (IF=7.000)
16. Yangyang Tan, Zeyi Zhang, Suhao Chen, Wei Wu, Liyue Yu, Runzhe Chen, Fei Guo, Zichen Wang, Niancai Cheng*. Local Geometric Distortion to Stimulate Oxygen Reduction Activity of Atomically Dispersed Zn-Nx Sites for Zn–Air Batteries. Advanced Functional Materials 2023, 10.1002/adfm.202311337. (IF=19.000)
17. Fei Guo, Zhijin Zou, Zeyi Zhang, Tang Zeng, Yangyang Tan, Runzhe Chen, Wei Wu, Niancai Cheng*, Xueliang Sun*. Confined sub-nanometer PtCo clusters as a highly efficient and robust electrocatalyst for the hydrogen evolution reaction. Journal of Materials Chemistry A 2021, 9, 5468. (IF=11.900)
18. Zhao Lei, Yangyang Tan, Zeyi Zhang, Wei Wu, Niancai Cheng*, Runzhe Chen, Shichun Mu*, Xueliang Sun*. Defects enriched hollow porous Co-N-doped carbons embedded with ultrafine CoFe/Co nanoparticles as bifunctional oxygen electrocatalyst for rechargeable flexible solid zinc-air batteries. Nano Research 2021, 14(3): 868-878. (IF=9.900)
19. Zeyi Zhang, Wei Wu, Suhao Chen, Zichen Wang, Yangyang Tan, Wei Chen, Fei Guo, Runzhe Chen, Niancai Cheng*. Directed Dual Charge Pumping Tunes the d‐Orbital Configuration of Pt Cluster Boosting Hydrogen Evolution Kinetic. Small 2023, 10.1002/smll.202307135. (IF=13.300)
申请专利:
1. 程年才,陈润喆;一种提高过渡金属硫化物催化剂稳定性的方法,中国,CN202111503069.2
2. 程年才,陈润喆;一种具有超高结构稳定性的过渡金属异质催化剂及其制备方法,中国,CN202210970292.6