Area of research
Applied Mathematics · Mechanical Engineering
Research interest
Research focused on Photothermal therapy and Proton exchange membrane fuel cell, with related work in Pyrolysis, Dibenzothiophene, Perovskite (structure). Notable publications include 'Molecular contacts with an orthogonal π-skeleton induce amorphization to enhance perovskite solar cell performance', 'Morphology‐controlled Synthesis of Molybdenum Oxide with Tunable Plasmon Absorption for Phothermal Therapy of Cancer', and 'Preparation of Reduced Graphene Oxide and Copper Sulfide Nanoplates Composites as Efficient Photothermal Agents for Ablation of Cancer Cells'.
Molecular contacts with an orthogonal π-skeleton induce amorphization to enhance perovskite solar cell performance
Poly((biphenyl)<sub>m</sub>-(aryl methylpiperidine)<sub>n</sub>-(dibenzothiophene)<sub>p</sub>)-Based Proton Exchange Membrane for High-Temperature Fuel Cell Application
Enhancing high-temperature proton exchange membrane fuel cell performance with oxophilic ionic liquid modified catalyst layer
Insight into pyrolysis behaviors of cedar under different atmospheres via a fixed-bed reactor
Morphology‐controlled Synthesis of Molybdenum Oxide with Tunable Plasmon Absorption for Phothermal Therapy of Cancer
Preparation of Reduced Graphene Oxide and Copper Sulfide Nanoplates Composites as Efficient Photothermal Agents for Ablation of Cancer Cells