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- 教师拼音名称: Ma Hao
- 电子邮箱: 6f538f725c805603a21a61a34885968928af07818fc9e0327ed616b6e6996f5560ed6f7e9b8bbc69573860292b90b7bff049875753209c8ba295f159ab90dfb887f56d989cf07a6fa22761e729d0a3a540be39b2e3337c0e227283711c483b24b54a5af5d440c114a9bf905046e4a1ddb016f7833741ae6a5adf56a0b5d7959f
- 所在单位: 大数据学院
- 学历: 博士研究生毕业
- 办公地点: 茶园校区信智楼A314室
- 性别: 男
- 学位: 工学博士学位
- 在职信息: 在岗
- 马浩,李雯婷,刘彬,胡浩南,李宇涵,徐伟,方瑞梅,董帆.Oxygen vacancies induced intrinsic electric field attenuation for superior molecular oxygen activation and NO oxidation:Chemical Engineering Journal,2025(505)
- 马浩,胡先礼,王雪梅,徐伟,申渝,方瑞梅,李宇涵,刘元元,董帆.d-band center modulated water molecule adsorption and activation towards highly photocatalytic toluene mineralization:Applied Catalysis B: Environment and Energy,2025(361)
- 马浩,王雪梅,谭天琦,周喜,董帆,孙艳娟.Stabilize the oxygen vacancies in Bi2SiO5 for durable photocatalysis via altering local electronic structure with phosphate dopant:Applied Catalysis B: Environmental,2022(319)
- 马浩,黄春燕,谭天琦,李雯婷,徐伟,申渝,李宇涵,方瑞梅,董帆.S-Scheme heterojunction of Cs2SnBr6/C3N4 with interfacial electron exchange toward efficient photocatalytic NO abatement:Journal of Colloid And Interface Science,2024(671)
- 马浩,何烨,陈鹏,王红,孙艳娟,李解元,董帆,谢更新,盛剑平.Ultrathin Two-Dimensional Bi-Based photocatalysts: Synthetic strategies, surface defects, and reaction mechanisms:Chemical Engineering Journal,2021(417)
- 马浩,王雪梅,金瑞斌,谭天琦,周喜,方瑞梅,申渝,董帆,孙艳娟.Promote hydroxyl radical and key intermediates formation for deep toluene mineralization via unique electron transfer channel:Journal of Colloid and Interface Science,2023(630)
- 马浩,何烨,董兴安,盛剑平,陈思,董帆,谢更新,孙艳娟.Doping and facet effects synergistically mediated interfacial reaction mechanism and selectivity in photocatalytic NO abatement:Journal of Colloid and Interface Science,2021(604)
- 马浩,杨文佳,唐洪義,潘阅,李雯婷,方瑞梅,申渝,董帆.Enhance the stability of oxygen vacancies in SrTiO3 via metallic Ag modification for efficient and durable photocatalytic NO abatement:Journal of Hazardous Materials,2023(452)
- 马浩,何烨,李小芳,盛剑平,李解元,董帆,孙艳娟.In situ loading of MoO3 clusters on ultrathin Bi2MoO6 nanosheets for synergistically enhanced photocatalytic NO abatement:Applied Catalysis B: Environmental,2021(292)