Papers
1
Total Citations
41
H-Index
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About
Xinyan Shi is a leading researcher in the field of advanced polymer materials, with a primary focus on the design and application of supramolecular hydrogels for flexible electronics. Her most cited work, "Ion Clusters‐Driven Strong and Acid/Alkali/Freezing‐Tolerant Conductive Hydrogels for Flexible Sensors in Extreme Environments" (2023, 41 citations), addresses a critical challenge in wearable technology: creating materials that maintain high conductivity and mechanical robustness under harsh conditions. Shi’s major contribution lies in developing a novel strategy using ion clusters to engineer hydrogels that are simultaneously strong, stretchable, and resistant to acid, alkali, and freezing temperatures—properties rarely achieved in conventional soft materials. This breakthrough enables reliable flexible sensors for use in extreme environments, from arctic cold to corrosive industrial settings. Her work has garnered significant attention, with this paper accumulating 41 citations in just one year, reflecting its immediate impact on the field. By overcoming the limitations of traditional supramolecular hydrogels, Shi is paving the way for next-generation wearable electronics and smart skins that can operate in demanding real-world conditions.
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