|
个人信息Personal Information
教授
博士生导师
教师拼音名称:lihaibo
出生日期:1974-02-21
电子邮箱:
入职时间:2013-10-08
办公地点:东北大学三号实验楼212室
性别:男
联系方式:
学位:博士
毕业院校:东北大学
所属院系:资源与土木工程学院
扫描关注
学术论文(SCI papers from 2019)
当前位置: 中文主页 >> 学术成果 >> 学术论文(SCI papers from 2019)- Zhang X., Mo, F*., Zhang P*., et al. Z-scheme heterojunction-enabled superoxide radical dominance in BiO2-x-Bi2O2CO3 photocatalyst for efficient organic pollutant degradation, 2026, Green Energy & Environment.
- Yin C., Liu W*., Mo F*., Zhan S*., et al. Atypical adsorbate-strong metal support interaction overcomes activity-stability trade-off via undercoordinated shells for Fenton-like catalysis. 2026, Nature Communication, Major Revision.
- 1Hou, Z., 1Mo, F., Zhou, Q., et al. Illuminating the nexus between non-biodegradable microplastics and soil nitrogen dynamics: A modulation through plant-derived organic matter. 2025, Journal of Hazardous Materials.
- Mo, F., Zhou, Q., Wang, P., et al. Hydrogen/solvent-free plastic valorization via loosely coordinated ruthenium sites steering selective aromatization. 2025, Chemical Science.
- 1Yin, C., 1Mo, F., Li, X., et al. Local structural distortion in MoS₂ triggers orbital energy level rearrangement of Fe sites to boost Fenton-like reactions. 2025, Applied Catalysis B: Environmental.
- 1Mo, F., 1Li, C., Zhou, Q. The pivotal role of phosphorus level gradient in regulating nitrogen cycle in wetland ecosystems. 2024, science of the Total Environment.
- 1Hou, Z., 1Mo, F., Zhou, Q., et al. Key role of vegetation cover in alleviating microplastic-enhanced carbon emissions. 2024, Environmental Science & Technology.
- 1Mo, F., 1Hou, Z., Zhou, Q., et al. Cu-optimized long-range interaction between Co nanoparticles and Co single atoms: Improved Fenton-like reaction activity. 2024, Science Bulletin.
- Mo, F., Zhou, Q., Xue, W., et al. The optimized catalytic performance of single-atom catalysts by incorporating atomic clusters or nanoparticles: In-depth understanding on their synergisms. 2023, Advanced Energy Materials.
- 1Hou, Z., 1Mo, F., Zhou, Q. Elucidating response mechanisms at the metabolic scale of Eisenia fetida in typical oil pollution sites: A native driver in influencing carbon flow. 2023, Environmental Pollution.
