Papers
1
Total Citations
56
H-Index
1
About
Keyu Guo is a materials scientist whose research focuses on the design and development of advanced self-healing polymers, particularly silicone elastomers with dynamic and reversible cross-linked networks. Their most notable contribution is the creation of a novel class of self-healing silicone elastomers that integrate disulfide, hydrogen, and metal-ligand bonds within a single material system. This innovative approach, detailed in their highly cited 2020 paper (56 citations), enables the material to autonomously repair damage at room temperature while maintaining robust mechanical properties. By combining multiple reversible bonding mechanisms, Guo has addressed a key challenge in the field: balancing self-healing efficiency with structural integrity. This work has significant implications for soft robotics, wearable electronics, and protective coatings, where durability and longevity are critical. Guo’s research exemplifies the power of molecular design in creating smart, responsive materials, and their contributions continue to inspire new strategies for developing next-generation, sustainable elastomers.
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Top Papers
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