Papers
2
Total Citations
9
H-Index
2
About
Dongyue Xie is a pioneering researcher at the intersection of robotics and energy storage, whose work is reshaping how autonomous systems interact with their environments and power themselves. His primary research areas span climbing robotics, adaptive locomotion, and next-generation battery technologies for mobile applications. Xie’s most notable contribution is the development of a wall-climbing robot arm capable of adapting to multiple contact wall surfaces, a breakthrough design that enables stable adhesion and manipulation on diverse vertical terrains. This work, cited 7 times, has laid foundational principles for inspection and maintenance robots operating in challenging built environments. More recently, Xie has ventured into energy innovation, engineering defect-engineered MnO₂@Ni foam electrodes for aqueous zinc-ion batteries (AZIBs). With 2 citations to date, this emerging work addresses critical limitations in AZIBs—such as poor cycling stability and low energy density—by introducing structural defects that enhance ion diffusion and electrochemical performance. By directly targeting the power needs of mobile robotics, Xie is bridging the gap between mechanical design and sustainable energy systems. His interdisciplinary approach, combining hardware innovation with materials science, positions him as a forward-thinking contributor to both robotics and energy storage fields.
Research Focus
Key Achievements
Top Papers
- 1
- 2