Papers
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Total Citations
6
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About
Yuqi Xiong is a materials scientist whose research lies at the intersection of soft matter engineering and advanced polymer design, with a particular focus on liquid crystal elastomers and organosilicone composites. Xiong’s most-cited work, "Liquid Crystal-Based Organosilicone Elastomers with Supreme Mechanical Adaptability" (2022, 6 citations), introduces a groundbreaking class of elastomers that fundamentally suppress stress accumulation under continuous deformation. This achievement addresses a long-standing challenge in soft robotics and wearable electronics: materials that stiffen or fail under repeated strain. By enabling a large, stable deformation zone without stress escalation, Xiong’s elastomers open new possibilities for artificial muscles, flexible sensors, and soft artificial-intelligence systems. The work’s impact is already evident in its citation by researchers developing next-generation adaptive materials. Xiong’s contributions are notable for bridging fundamental polymer physics with practical device requirements, offering a platform where mechanical adaptability and durability coexist. For students and researchers exploring soft robotics or responsive materials, Xiong’s research provides a compelling example of how molecular design can yield macroscopic performance—transforming how we think about materials that must stretch, bend, and recover without compromise.
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