玩偶姐姐

许远杰

职 称: 讲师

学 历: 博士研究生

硕士招生专业: 物理化学

博士招生专业:

电子邮件: [email protected]

研究方向: 1. 低碳烷烃分子催化转化。 2. 单原子催化剂的设计、合成、表征和催化机理研究。 3. 表面科学,原位工况先进催化研究技术开发。

课题组网页:

教育工作经历 (Education and working experiences)

2025-至今福州大学化学学院,讲师、硕导。

2019-2025福州大学化学学院,博士研究生。

2021-2022中科合成油技术有限公司联合培养

2016-2019福州大学化学学院,理学硕士

2011-2015华侨大学材料学院,工学学士

科研简介 (Scientific research)

主要从事用于低碳烷烃分子催化转化及表面化学机理研究;原位工况先进催化研究技术开发,包括近常压光电子能谱(NAP-XPS)和近常压扫描隧道显微镜(NAP-STM)。目前在ACS Catal., Chin. J. Catal., Sci. China Chem., J. Catal.,Phys. Rev. Lett., Environ. Sci. Technol.等刊物上发表SCI论文20余篇。

科研项目 (Scientific research projects)

福州大学科研启动基金

代表性论文 (Representative papers)

1.Yuanjie Xu, Run Hou, Kunxiang Chi,et al. A water-resistant and stable Pd-Co3O4catalytic interface for complete methane oxidation with insights on active structures and reaction pathway,Chinese Journal of Catalysis,2025,74,191-201.

2.Yuanjie Xu, Zemin An, Yu Tang,Recent progress in exploring heterogeneous catalyst surface chemistry with near ambient pressure XPS,Science China Chemistry, 2025, 68,2867-2891.

3.Yuanjie Xu, Jikang Yao, Hongqiao Lin, et al. Functional CeOxStabilized Metallic Ni CatalystSupported on Boron Nitride for Durable Partial Oxidation of Methane to Syngas at High Temperature.ACS Catalysis, 2024,14,11845-11856.

4.Yuanjie Xu, Rong Chen, Hongqiao Lin, et al. Constructing the Ni-O-Ce interface to enhance theactivity and stability for partial oxidation of methane to syngas under high temperatures.Journal ofCatalysis, 2024,435,115545.

5.Yuanjie Xu, Zemin An, Xin Yu, et al. Enhanced catalytic stability and structural evolution of Rh-BNinterface in dry reforming of methane under intensified CO2partial pressure.Journal of Catalysis,2023,427,115094.

6.Yuanjie Xu, Shichao Yang, Meihui Ying, et al. Enhanced photocatalytic activity of Ag/ZnO@ZIF-Cwith core-shell structure and multiple catalytic sites.Colloids and Surfaces, A. Physicochemical andEngineering Aspects,2023,658,130686.

7.Yuanjie Xu, Chaochao Li, Huihan Huang, et al. Hydrophobic functionalization of ZnO Nanosheetsby in situ center-substituted synthesis for selective Photocatalysis under visible irradiation.Particle& Particle Systems Characterization,2019,36,1800403.




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