Toward effective irregular wind energy harvesting: Self-adaptive mechanical design strategy of triboelectric-electromagnetic hybrid wind energy harvester for wireless …

D Lee, S Cho, S Jang, Y Ra, Y Jang, Y Yun, D Choi - Nano Energy, 2022 - Elsevier
Wind energy, which has been attracting attention as a sustainable clean energy for carbon
neutrality, needs to be efficiently harvested in consideration of the intrinsic mechanical …

Optimization strategy of wind energy harvesting via triboelectric-electromagnetic flexible cooperation

X Li, Q Gao, Y Cao, Y Yang, S Liu, ZL Wang, T Cheng - Applied Energy, 2022 - Elsevier
As a favorable renewable energy source, wind energy has the advantages of large reserves
and wide distribution. To harvest wind energy effectively, an optimization strategy of wind …

A self-regulation strategy for triboelectric nanogenerator and self-powered wind-speed sensor

HX Zou, LC Zhao, Q Wang, QH Gao, G Yan, KX Wei… - Nano Energy, 2022 - Elsevier
Small wind harvesting can be integrated with sensors for self-powered environmental
ecological monitoring, climate monitoring, natural disaster monitoring and on-site …

Auto‐switching self‐powered system for efficient broad‐band wind energy harvesting based on dual‐rotation shaft triboelectric nanogenerator

S Yong, J Wang, L Yang, H Wang, H Luo… - Advanced Energy …, 2021 - Wiley Online Library
A triboelectric nanogenerator (TENG) based self‐powered system for wind energy
harvesting introduces a desirable solution to alleviate the expanding energy supply …

Physical intelligence-based working mode adaptable triboelectric nanogenerator for effective wind energy harvesting in broad range

S Cho, D Lee, S Jang, S Cho, J Shim, Y Jang, ZH Lin… - Nano Energy, 2023 - Elsevier
Triboelectric nanogenerators (TENGs) offer a promising solution for harvesting wind energy,
which is a renewable source of natural energy that can be dissipated. However, designing a …

Environmental self‐adaptive wind energy harvesting technology for self‐powered system by triboelectric‐electromagnetic hybridized nanogenerator with dual …

S Yong, H Wang, Z Lin, X Li, B Zhu… - Advanced Energy …, 2022 - Wiley Online Library
Natural wind energy harvesting enables a far‐reaching and sustainable solution to supply
pervasive sensors in the Internet of Things (IoT). Electromagnetic generators (EMGs) …

Triboelectric-electromagnetic hybrid generator with the inertia-driven conversion mechanism for wind energy harvesting and scale warning

H Dang, Y Wang, S Zhang, Q Gao, X Li, L Wan… - Materials Today …, 2022 - Elsevier
The natural wind is an important factor for agricultural production, which can be used as a
clean energy supply for agricultural sensors, but excessive wind speed will destroy crops …

Driving-torque self-adjusted triboelectric nanogenerator for effective harvesting of random wind energy

Y Wang, X Li, X Yu, J Zhu, P Shen, ZL Wang, T Cheng - Nano Energy, 2022 - Elsevier
Triboelectric nanogenerators (TENGs), as a new energy technology for distributed power,
are used widely in the field of the natural environment energy harvesting. Because the …

Triboelectric-electromagnetic hybrid generator with swing-blade structures for effectively harvesting distributed wind energy in urban environments

Y Yan, J Zhu, Y Zhang, Z Wang, L Jiang, ZL Wang… - Nano Research, 2023 - Springer
The wind energy in cities cannot be exploited effectively because natural wind is unstable
and complex. Therefore, a triboelectric-electromagnetic hybrid generator with swing-blade …

A high-performance triboelectric-electromagnetic hybrid wind energy harvester based on rotational tapered rollers aiming at outdoor IoT applications

Y Fang, T Tang, Y Li, C Hou, F Wen, Z Yang, T Chen… - IScience, 2021 - cell.com
This article proposed a high-performance triboelectric-electromagnetic hybrid wind energy
harvester (WEH). By adopting the revolution and rotation movements of tapered rollers …