Skip to menu Skip to content Skip to footer
The University of Queensland
  • Study
  • Research
  • Partners and community
  • About
UQ Dow Centre
  • Home
  • About
  • Research
    • Research
    • Seed Grants
    • Green Chemical Production
    • Carbon Dioxide Utilisation
    • Socio-Techno-Economic Analysis
  • News
  • Partnerships
  • Publications
  • Our people
  • Contact
  • Study
  • Research
  • Partners and community
  • About
  • UQ home
  • News
  • Events
  • Give
  • Contact
  • UQ home
  • News
  • Events
  • Give
  • Contact
UQ Dow Centre
  • Home
  • About
  • Research
    • Seed Grants
    • Green Chemical Production
    • Carbon Dioxide Utilisation
    • Socio-Techno-Economic Analysis
  • News
  • Partnerships
  • Publications
  • Our people
  • Contact

Mr Xuefeng Li

Higher Degree Researcher
Dow Centre for Sustainable Engineering Innovation
xuefeng.li@uq.edu.au

Publications

Journal Articles (3)

Journal Articles

Wang, Zhuyuan, Jia, Chen, Wang, Yuxiang, Yan, Xue, Yong, Ming, Low, Ze-Xian, Zeng, Xiangkang, Yang, Jindi, Zhang, Hao, Li, Xuefeng, Sun, Kaige, Tebyetekerwa, Mike, Xu, Rongming, Zhao, Wenming, Xu, Kaijie, Kang, Yuan, Strounina, Ekaterina, Andreeva, Daria V., Whittaker, Andrew K., Liu, Jefferson Zhe, Zhao, Chuan, Novoselov, Kostya S. and Zhang, Xiwang (2026). Confined polymerization in nanochannels for synthesizing functional membranes. Nature Synthesis. doi: 10.1038/s44160-026-00991-z
Zhang, Hao, Yong, Ming, Hu, Ting, Kang, Yuan, Wang, Zhuyuan, Xu, Zhonghao, Li, Xuefeng, Sun, Xin, Guo, Lijun, Sheng, Fangmeng, Zeng, Xiangkang, Li, Zhikao, Li, Xingya, Wang, Huanting, Xu, Tongwen and Zhang, Xiwang (2025). Multifunctional intercalants create stable subnanochannels in MoS2 membranes for wastewater treatment. Nature Communications, 16 (1) 8353, 8353. doi: 10.1038/s41467-025-58409-x
Wang, Zhuyuan, Hu, Ting, Tebyetekerwa, Mike, Zeng, Xiangkang, Du, Fan, Kang, Yuan, Li, Xuefeng, Zhang, Hao, Wang, Huanting and Zhang, Xiwang (2024). Electricity generation from carbon dioxide adsorption by spatially nanoconfined ion separation. Nature Communications, 15 (1) 2672, 1-9. doi: 10.1038/s41467-024-47040-x
UQ acknowledges the Traditional Owners and their custodianship of the lands on which UQ is situated. Reconciliation at UQ
  • Media

    • Media team contacts
    • Find a subject matter expert
    • UQ News
  • Working with us

    • Careers and job search
    • Strategic Plan
    • Staff Intranet
    • IT support
  • Current students

    • my.UQ
    • Programs and courses
    • Academic calendar
    • Student support
    • IT support
  • Library

    • Library
    • Study and learning support
    • Research and publish
    • Visit
  • Contact

    • Contact UQ
    • Make a complaint
    • Faculties, schools, institutes and centres
    • Divisions and departments
    • Campuses, maps and transport
    • Media team contacts
    • Find a subject matter expert
    • UQ News
    • Careers and job search
    • Strategic Plan
    • Staff Intranet
    • IT support
    • my.UQ
    • Programs and courses
    • Academic calendar
    • Student support
    • IT support
    • Library
    • Study and learning support
    • Research and publish
    • Visit
    • Contact UQ
    • Make a complaint
    • Faculties, schools, institutes and centres
    • Divisions and departments
    • Campuses, maps and transport
Web login
  • © The University of Queensland
  • ABN: 63 942 912 684
  • CRICOS: 00025B
  • TEQSA: PRV12080
  • Copyright, privacy and disclaimer
  • Accessibility
  • Right to information
  • Feedback