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张天雨 教授 |
E- mail: tzhang@bjfu.edu.cn |
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研究方向:环境功能材料理论研究与应用; |
个人履历
教育经历:
01. 2006.08-2011.06 ---大连理工大学,化工学院,获化工/英语双学士学位
02. 2013.08-2019.12 ---美国南伊利诺伊大学卡本代尔分校,化学与生物化学系,获理学博士学位
主要工作经历:
01. 2020.03-2020.08 --- 美国南伊利诺伊大学卡本代尔分校,化学与生物化学系,博士后
02. 2020.08-2021.08 --- 美国田纳西大学/橡树岭国家实验室,先进材料联合研究中心,博士后
03. 2021.11-2023.12 --- 北京林业大学,环境科学与工程学院,讲师
04. 2024.01- 2025.12--- 北京林业大学,环境科学与工程学院,副教授
05. 2025.12-至今--- 北京林业大学,环境科学与工程学院,教授
教学工作
01. 本科生课程:《工程水力学》《环境类专业英语》《认识实习》《生产实习》
02. 研究生课程:《减碳与固碳技术》
科学研究
主要研究领域:
01. 环境功能材料的DFT理论研究与应用
02. CO2捕集与利用(CCU)
代表性研究项目:
主持国家自然科学基金青年基金项目1项、国家重点研发计划青年科学家项目子任务1项、横向课题5项;作为技术骨干参与国家重点研发计划项目1项。
代表性文章:
01. “Efficient methane oxidation to formaldehyde via photon–phonon cascade catalysis”, Nature Sustainability 2024, 7 (9), 1171-1181;
02. “Selective oxidation of methane to C2+ products over Au-CeO2 by photon-phonon co-driven catalysis”, Nature Communications 2024, 15 (1), 7535;
03. “Molecular tuning boosts asymmetric CC coupling for CO conversion to acetate”, Nature Communications 2024, 15 (1), 3641;
04. “Enhanced low-temperature CO2 methanation over La-promoted NiMgAl LDH derived catalyst: Fine-tuning La loading for an optimal performance”, Fuel 2024, 366, 131383;
05. “A molecular view of single-atom catalysis toward carbon dioxide conversion”, Chemical Science 2024, 15 (13), 4631-4708;
06. “Sulfur Changes the Electrochemical CO2 Reduction Pathway over Cu Electrocatalysts”, Angewandte Chemie 2023, 135 (44), e202310740;
07. “Maximizing the utilization of single-atom sites on carbon-based catalysts for efficient CO2 electroreduction with ultrahigh turnover frequency”, Applied Catalysis B: Environment and Energy 2023, 333, 122801;
08. “Surface modification of Cu2O with stabilized Cu+ for highly efficient and stable CO2 electroreduction to C2+ chemicals”, Journal of Energy Chemistry 2023, 84, 277-285;
09. “Fabrication of structurally improved KNaTiO3 pellets derived from cheap rutile sand for high-temperature CO2 capture”, Fuel 2023, 354, 129322;
10. “Facile Synthesis of Highly Defective MoSxOy Catalysts by Oxygen Etching-Reduction for Efficient m-Cresol Hydrodeoxygenation”, Industrial & Engineering Chemistry Research 2023, 62 (27), 10409-10418;
11. “Current advances in bimetallic catalysts for carbon dioxide hydrogenation to methanol”, Fuel 2022, 313, 122963;
12. “Hydrogen-rich syngas production from biomass pyrolysis and catalytic reforming using biochar-based catalysts”, Fuel 2022, 313, 123006;
13. “Strong Metal–Support Interaction Boosts Activity, Selectivity, and Stability in Electrosynthesis of H2O2”, Journal of the American Chemical Society 2022, 144 (5), 2255-2263;
14. “Surface enrichment of Ir on the IrRu alloy for efficient and stable water oxidation catalysis in acid”, Chemical Science 2022, 13 (41), 12114-12121;
15. “Metal–organic framework derived single-atom catalysts for CO2 conversion to methanol”, Current Opinion in Green and Sustainable Chemistry 2022, 37, 100660;
社会工作
01. Journal of Energy Chemistry 青年编委
02. Journal of Environmental Science 青年编委
荣誉
01. 2023 中国研究生“双碳”创新与创意大赛二等奖,指导教师;
02. 2022 中国国际“互联网+”大学生创新创业大赛北京赛区三等奖,指导教师;
03. 2022 北京林业大学教育教学改革与研究优秀论文三等奖,第一获奖者。