Dr. Shuqi Dai | Lithium Batterry | Best Researcher Award
Associate Professor | Jiangxi University of Science and Technology | China
Dr. S.Q. Dai is a highly accomplished researcher with a strong academic background spanning chemical engineering, materials science, and inorganic chemistry, with degrees and research training from leading institutions including Chang’an University, Xiamen University, South China University of Technology, and the University of Waterloo, where he worked under the guidance of internationally renowned scholars and academicians. His research expertise centers on the rational design, synthesis, and application of functional nanoclusters, soft matter, and advanced polymeric and inorganic materials, with a particular focus on addressing global challenges in energy storage, catalysis, and environmental sustainability. His doctoral and collaborative research has led to important advances in the development of titanium-oxide based clusters for high-performance energy devices, multifunctional polymer electrolytes for lithium and lithium-sulfur batteries, novel sulfur-containing superionic conductors, and innovative electrolyte additives that significantly enhance the stability and safety of next-generation batteries. He has also contributed to the design of S-scheme heterostructure photocatalysts for efficient solar-driven reactions, soft-matter systems with ferroelectric and nonlinear optical properties, and nanomaterials for catalytic degradation of volatile organic compounds, as well as biomedical applications including tumor therapy through radiation-enhanced catalytic processes. His professional skill set includes mastery of advanced analytical instrumentation such as single-crystal X-ray diffraction, electron microscopy, NMR, mass spectrometry, chromatographic techniques, electrochemical workstations, as well as expertise in organic synthesis, polymerization techniques, and the construction of catalytic and electrochemical testing setups
Profile: Scopus | Google Scholar
Featured Publications:
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Author, A. A., Author, B. B., Author, C. C., … Author, Z. Z. (2025). Metal-organic cage crosslinked nanocomposites with enhanced high-temperature capacitive energy storage performance. Nature Communications.
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Author, A. A., Author, B. B., Author, C. C., … Author, Z. Z. (2025). Multifunctional polyol electrolyte design toward long lifespan aqueous zinc-ion batteries. Advanced Energy Materials.
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Author, A. A., Author, B. B., Author, C. C., … Author, Z. Z. (2025). Solvent-free superionic polymer conductors from a bicontinuous network nanostructure. Macromolecules.