Xinli Zhuang
Papers
2
Total Citations
11
H-Index
2
About
Xinli Zhuang is a materials scientist whose research focuses on the design and development of high-performance, sustainable cellulosic materials for advanced triboelectric and flexible electronic applications. Zhuang’s major contribution lies in ingeniously harnessing the Hofmeister effect to overcome the long-standing trade-off between strength and toughness in flexible films. By mimicking nature’s multilevel structures, Zhuang’s work demonstrates that cellulosic triboelectric materials can be simultaneously strengthened and toughened, a breakthrough that has direct implications for tissue engineering, soft robotics, and wearable electronics. This pioneering approach has already garnered attention, with the most-cited paper accumulating 8 citations shortly after its 2025 publication. Zhuang’s research not only advances the fundamental understanding of ion-specific effects in polymer networks but also provides a practical pathway to create robust, biodegradable, and self-powered materials. This work represents a significant step toward next-generation green electronics, positioning Zhuang as an emerging leader in sustainable materials engineering.
Research Focus
Key Achievements
Top Papers
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