Recent advances in triboelectric nanogenerators for marine exploitation

C Zhang, Y Hao, J Yang, W Su, H Zhang… - Advanced Energy …, 2023 - Wiley Online Library
The ocean, as one of the most important areas for human production and living, plays a vital
role in transportation, food production, and energy supply. However, it is greatly desired to …

Promoting smart cities into the 5G era with multi-field Internet of Things (IoT) applications powered with advanced mechanical energy harvesters

L Liu, X Guo, C Lee - Nano Energy, 2021 - Elsevier
Along with the arrival of the 5G era, sustainable and renewable energy supplies have
become urgent demands towards plentifully distributed devices utilized for constructing …

Mechanical intelligent wave energy harvesting and self-powered marine environment monitoring

LC Zhao, HX Zou, X **e, DH Guo, QH Gao, ZY Wu… - Nano Energy, 2023 - Elsevier
Harvesting wave energy to power wireless sensors can realize marine environment
monitoring. However, the low frequency and irregularity of waves, as well as the harsh …

Progress in wearable electronics/photonics—Moving toward the era of artificial intelligence and internet of things

Q Shi, B Dong, T He, Z Sun, J Zhu, Z Zhang, C Lee - InfoMat, 2020 - Wiley Online Library
The past few years have witnessed the significant impacts of wearable electronics/photonics
on various aspects of our daily life, for example, healthcare monitoring and treatment …

[HTML][HTML] Renewable energy for SDG-7 and sustainable electrical production, integration, industrial application, and globalization

VL Trinh, CK Chung - Cleaner Engineering and technology, 2023 - Elsevier
Traditional electricity is produced from coal, mineral oil, or fossil fuels those have produced a
heavy environmental pollution by the greenhouse gas emissions and industrial pollutants …

Recent progress in blue energy harvesting for powering distributed sensors in ocean

T Zhao, M Xu, X **ao, Y Ma, Z Li, ZL Wang - Nano Energy, 2021 - Elsevier
Oceanography has received a lot of attention in the 21st century. Due to the harsh and
complex ocean conditions, ensuring power supply to the distributed marine equipment has …

Machine learning glove using self‐powered conductive superhydrophobic triboelectric textile for gesture recognition in VR/AR applications

F Wen, Z Sun, T He, Q Shi, M Zhu, Z Zhang… - Advanced …, 2020 - Wiley Online Library
The rapid progress of Internet of things (IoT) technology raises an imperative demand on
human machine interfaces (HMIs) which provide a critical linkage between human and …

Hybrid energy harvesting technology: From materials, structural design, system integration to applications

H Liu, H Fu, L Sun, C Lee, EM Yeatman - Renewable and sustainable …, 2021 - Elsevier
The last decade has witnessed significant advances in energy harvesting technology for the
realization of self-charging electronics and self-powered wireless sensor nodes (WSNs). To …

Nonlinear vibration energy harvesting and vibration suppression technologies: Designs, analysis, and applications

T Yang, S Zhou, S Fang, W Qin, DJ Inman - Applied Physics Reviews, 2021 - pubs.aip.org
Limited by the structure, the high-efficiency vibration energy harvesting and vibration
suppression have always been a theoretical bottleneck and technical challenge in this field …

Advances in solid–solid contacting triboelectric nanogenerator for ocean energy harvesting

H Zhai, S Ding, X Chen, Y Wu, ZL Wang - Materials Today, 2023 - Elsevier
Ocean energy is widely distributed around the world and is one of the most promising
renewable energy sources. Triboelectric nanogenerators (TENGs) have distinct advantages …