Regular biography
Xu Hui is a distinguished researcher in the field of polymer chemistry, with a particular focus on the development and application of selenium- and tellurium-containing materials. His work spans a wide range of areas, including dynamic covalent chemistry, responsive polymers, and their applications in biomedical and environmental contexts. Xu has made significant contributions to the design of stimuli-responsive materials, such as those that respond to reactive oxygen species (ROS), light, and mechanical stress. His research has led to the development of advanced drug delivery systems, cancer therapies, and sustainable materials with potential for selective metal extraction and recycling. Xu's work is characterized by its interdisciplinary nature, combining principles from polymer science, materials chemistry, and biomedical engineering. He has published extensively in high-impact journals and has been recognized for his innovative approaches and impactful research. His research has not only advanced the scientific understanding of dynamic covalent systems but has also provided practical solutions for real-world challenges in healthcare and environmental sustainability.
Scholar-generated biography
Huaping Xu is a researcher at Tsinghua University specializing in Polymer, Dynamic covalent chemistry, Supramolecular Science, Non-carbon Backbone Polymers, and Se/Te. Their work focuses on developing selenium and tellurium-containing polymers with applications in biomedical materials, nanobiotechnology, and controlled drug delivery. Xu's research explores the synthesis and properties of selenium-containing polymers, including their use in enzyme mimics, free-radical scavenging, and responsive self-assembly. They have also investigated the photocontrolled and redox-responsive behavior of diselenide-containing materials, highlighting their potential in nanomedicine and self-healing systems. The research emphasizes the design of functional supramolecular materials with tunable properties for advanced biomedical applications.