Engineering and TechnologyNature Communications
Underwater wireless communication via TENG-generated Maxwell's displacement current
H. Zhao, M. Xu, et al.
This innovative research introduces a groundbreaking underwater wireless communication technique utilizing Maxwell's displacement current from a triboelectric nanogenerator. The approach demonstrates impressive immunity to environmental challenges, enabling effective text and image transmission and even wireless control of underwater lighting systems. Conducted by a team of researchers including Hongfa Zhao and Minyi Xu, this study offers a promising solution for complex underwater communication needs.
Related Publications
Explore these studies to deepen your understanding
Adjacent work that informs or extends this paper's methodology and findings.
Medicine and Health
Biomimetic computer-to-brain communication enhancing naturalistic touch sensations via peripheral nerve stimulation
G. Valle, N. K. Secerovic, et al.
Engineering and Technology
Encoding of multi-modal emotional information via personalized skin-integrated wireless facial interface
J. P. Lee, H. Jang, et al.
Engineering and Technology
Encoding of multi-modal emotional information via personalized skin-integrated wireless facial interface
J. P. Lee, H. Jang, et al.
Interdisciplinary Studies
A data-driven short video international communication model based on indicator system communication network and attention BiLSTM neural network
J. Song and J. Liu

