Papers
2
Total Citations
44
H-Index
2
About
Yihong Guo is making significant strides at the intersection of advanced materials and flexible electronics, with a primary focus on developing high-performance conductive hydrogels. Their research is particularly distinguished by a dual emphasis on both functionality and environmental resilience. Guo’s most impactful work, a bacterial cellulose-based multifunctional conductive hydrogel (38 citations), demonstrates a key contribution: the integration of flexible strain sensing with energy storage capabilities in a single material platform. This innovation is crucial for next-generation wearable electronics and soft robotics. Further extending this frontier, Guo has engineered a hydroxyethyl cellulose-enhanced hydrogel that maintains high adhesion and sensing fidelity even under freezing conditions. This breakthrough directly addresses a critical bottleneck in deploying robotic systems in extreme environments, enabling reliable posture detection and tactile sensing at low temperatures. By tackling the challenge of low-temperature performance while maintaining robust mechanical properties, Guo’s work is paving the way for more versatile and durable intelligent systems, from AI-driven prosthetics to autonomous robots operating in harsh climates.
Research Focus
Key Achievements
Top Papers
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