Puguang Peng
Papers
2
Total Citations
42
H-Index
2
About
Puguang Peng is pioneering the emerging field of triboiontronics, where solid-liquid interfaces and ion transport are engineered to create energy-efficient, bio-inspired electronic systems. His most-cited work introduces a transistor-like triboiontronic device that achieves a record-high charge density, enabling self-powered sensors and neurologic analogs that mimic biological signal transmission. This breakthrough addresses the fundamental limits of Moore’s Law by offering an alternative to traditional von Neumann architecture. In a second highly influential paper, Peng developed a biomimetic Janus MXene membrane with bidirectional ion permselectivity, a material that simultaneously enhances osmotic energy conversion and enables iontronic logic control—a critical step toward sustainable energy and neural-inspired computing. With over 40 citations across his top papers, Peng’s contributions are already shaping the future of iontronics, neuromorphic devices, and osmotic energy harvesting. His work stands out for its elegant fusion of materials science, interfacial physics, and bioinspired design, offering a clear path toward next-generation, low-power information processing and energy conversion technologies.
Research Focus
Key Achievements
Top Papers
- 1
- 2