Wind energy at a high altitude is far more stable and stronger than that near the ground, but it is out of reach of the wind turbine. Herein, we develop an innovative freestanding woven triboelectric nanogenerator flag (WTENG-flag) that can harvest high-altitude wind energy from arbitrary directions. The wind-driven fluttering of the woven unit leads to the current generation by a coupled effect of contact electrification and electrostatic induction. Systematic study is conducted to optimize the structure/material parameters of the WTENG-flag to improve the power output. This 2D WTENG-flag can also be stacked in parallel connections in many layers for a linearly increased output. Finally, a self-powered high-altitude platform with temperatu...
Efficient scavenging the kinetic energy from air-flow represents a promising approach for obtaining ...
Everything is expected to be informatically connected in the era of the distributed Internet of Thin...
We report a hybridized nanogenerator with dimensions of 6.7 cm × 4.5 cm × 2 cm and a weight of 42.3 ...
Wind energy at a high altitude is far more stable and stronger than that near the ground, but it is ...
Throughout the world, wind energy is widely distributed as one of the most universal energy sources ...
The utilization of various distributed energy is becoming a prominent research topic due to the rapi...
We report a triboelectric nanogenerator (TENG) that plays dual roles as a sustainable power source b...
The environmentally friendly harvesting of wind energy is an effective technique for achieving carbo...
Harvesting mechanical energy is becoming increasingly important for its availability and abundance i...
In recent years, environmental problems caused by natural disasters due to global warming have serio...
Triboelectric nanogenerators (TENG:s) are used as efficient energy transducers in energy harvesting ...
The current temperature-rising trend is extremely important because most of it is a result of human ...
We have developed a free-standing-mode based triboelectric nanogenerator (F-TENG) that consists of i...
Abstract Triboelectric nanogenerators (TENGs) are actively being researched and developed to become ...
Wind, as a ubiquitous energy, is an important power source for intelligent monitoring systems in sma...
Efficient scavenging the kinetic energy from air-flow represents a promising approach for obtaining ...
Everything is expected to be informatically connected in the era of the distributed Internet of Thin...
We report a hybridized nanogenerator with dimensions of 6.7 cm × 4.5 cm × 2 cm and a weight of 42.3 ...
Wind energy at a high altitude is far more stable and stronger than that near the ground, but it is ...
Throughout the world, wind energy is widely distributed as one of the most universal energy sources ...
The utilization of various distributed energy is becoming a prominent research topic due to the rapi...
We report a triboelectric nanogenerator (TENG) that plays dual roles as a sustainable power source b...
The environmentally friendly harvesting of wind energy is an effective technique for achieving carbo...
Harvesting mechanical energy is becoming increasingly important for its availability and abundance i...
In recent years, environmental problems caused by natural disasters due to global warming have serio...
Triboelectric nanogenerators (TENG:s) are used as efficient energy transducers in energy harvesting ...
The current temperature-rising trend is extremely important because most of it is a result of human ...
We have developed a free-standing-mode based triboelectric nanogenerator (F-TENG) that consists of i...
Abstract Triboelectric nanogenerators (TENGs) are actively being researched and developed to become ...
Wind, as a ubiquitous energy, is an important power source for intelligent monitoring systems in sma...
Efficient scavenging the kinetic energy from air-flow represents a promising approach for obtaining ...
Everything is expected to be informatically connected in the era of the distributed Internet of Thin...
We report a hybridized nanogenerator with dimensions of 6.7 cm × 4.5 cm × 2 cm and a weight of 42.3 ...