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Linqing Li

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Linqing Li
OccupationMaterials scientist, bioengineer
Alma materUniversity of Science and Technology Beijing; University of Delaware

Linqing Li is a materials scientist and bioengineer who serves as an assistant professor of chemical engineering and bioengineering at the University of New Hampshire.[1] Her work focuses on microstructured hydrogels, including their use in promoting wound healing and in engineering liquid-liquid phase separation.[2][3]

Education

Li received a bachelor's degree in Materials Science and Engineering from the University of Science and Technology Beijing, completed between 2003 and 2007.[4] She earned a Ph.D. in Materials Science and Engineering from the University of Delaware, completed between 2007 and 2013.[5]

Career

Li conducted postdoctoral research in Materials Science and Engineering at the University of Delaware from 2014 to 2016.[6] From 2016 to 2020, she was affiliated with the Wyss Institute for Biologically Inspired Engineering at Harvard University and worked as a Postdoctoral Associate in Biomedical Engineering at Boston University.[7] Since 2020, she has been an Assistant Professor in the Department of Chemical Engineering and Bioengineering at the University of New Hampshire.[8]

Research

Li received a National Science Foundation CAREER award for a project titled "Bottom-up Approach to Engineer Liquid-Liquid Phase Separation and Mechanical Heterogeneity in Microstructured Hydrogels," totaling $307,402, awarded at the University of New Hampshire beginning January 8, 2025.[9]

She has also received funding from the National Institutes of Health for a project titled "Combining soluble and bound factors in microstructured hydrogels to promote chronic wound angiogenesis and healing," with awards to the University of New Hampshire totaling $378,929, $373,582, and $368,235 across three funding periods.[10]

According to Semantic Scholar, her publication record includes work on carotid plaque characterization using quantitative T2 mapping.[11]

Selected publications

  • "In-vivo carotid plaques characterisation using quantitative T2 map: histological validation and lipid quantification" (2014)[12]
  • "Characterisation of carotid plaques by in-vivo quantitative T2 mapping: histological validation and lipid quantification" (2014)[13]
  1. University of New Hampshire faculty records
  2. National Science Foundation award records
  3. National Institutes of Health award records
  4. ORCID record 0000-0003-3003-9902
  5. ORCID record 0000-0003-3003-9902
  6. ORCID record 0000-0003-3003-9902
  7. ORCID record 0000-0003-3003-9902
  8. ORCID record 0000-0003-3003-9902
  9. National Science Foundation award records
  10. National Institutes of Health award records
  11. Semantic Scholar author profile
  12. Semantic Scholar author profile
  13. Semantic Scholar author profile