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Fifteen Graduate Students Passed Their Thesis Defense in the Past Three Days!

Yuan Cai, Qingfeng Chang, Chujun Wang, Sichan Wu, Hao Dong, Peipei Jia, Dingbo Lai, Lanyu Hu, Xiao Ma, Ran Zhao, Qingyang Jiang, Xiangyu Fu, Hongyi Wang, Chenbin Luo, Xin Han passed their thesis defense today. Congrats!

Doctoral students

List of the thesis titles:

Yuan Cai: Development of Robust Photoanode Devices and Their Mechanistic Role in Solar-Assisted Reforming Reactions.

Qingfeng Chang: Interface Engineering of CO2 Reduction Electrocatalysts via iCVD Technique and Study of Their Electrocatalytic Performance.

Chujun Wang: Tuning of Carbon-Based Thin Film Hybrid Structures and Their Electrocatalytic Performance for CO2 Reduction.

Sichan Wu: Applications of Large Language Models in Industrial Catalysis.

Hao Dong: Catalyst Design and Mechanistic Study of Electrocatalytic Ethylene Epoxidation and Carbon Dioxide Reduction Systems.

Peipei Jia: Construction and Performance Study of Large-Area CO2 Electrocatalytic Reduction Reactors.

Master students

List of the thesis titles:

Lanyu Hu: Scale-Up Process Study of Membrane Electrode Reactors for Electrocatalytic CO2 Reduction.

Xiao Ma: Theoretical Study on the Structure–Activity Relationship of Oxide-Derived CuZn Alloy Catalyst Surfaces.

Ran Zhao: Applications of Machine Learning in Catalyst Feature Extraction and Structural Modeling: A Case Study on Propane Dehydrogenation.

Qingyang Jiang: Construction of Low-Temperature Plasma-Mediated Alkane Conversion Systems and Mechanistic Study

Xiangyu Fu: Investigation of Internal Diffusion and Coke Formation Kinetics on Pt-Based Catalysts for Propane Dehydrogenation.

Hongyi Wang: Design of Electrocatalysts for Ethylene Epoxidation Involving Halide Ions and Process Intensification Study.

Chenbin Luo: Flow Field Design and Thin Film Performance Investigation in Tungsten Metal Chemical Vapor Deposition.

Xin Han: Mechanistic Study on Mass Transfer Enhancement and Film Densification Control in Atomic Layer Deposition on Complex Substrate Surfaces.