Energy harvesting from ambient water motions is a desirable but underexplored solution to on-site energy demand for self-powered electronics. Here we report a liquid–solid electrification-enabled generator based on a fluorinated ethylene propylene thin film, below which an array of electrodes are fabricated. The surface of the thin film is charged first due to the water–solid contact electrification. Aligned nanowires created on the thin film make it hydrophobic and also increase the surface area. Then the asymmetric screening to the surface charges by the waving water during emerging and submerging processes causes the free electrons on the electrodes to flow through an external load, resulting in power generation. The generator produces s...
This paper evaluates the effect of water-dielectric interfaces for wave impact energy harvesting at ...
An energy-harvesting device based on water moving across the junction between a hydrophobic dielectr...
We invented a triboelectric nanogenerator (TENG) that is based on a wavy-structured Cu–Kapton–Cu fil...
Energy harvesting from ambient water motions is a desirable but underexplored solution to on-site en...
Energy harvesting from ambient water motions is a desirable but underexplored solution to on-site en...
Strategies toward harvesting energy from water movements are proposed in recent years. Reverse elect...
With 70% of the earth’s surface covered with water, wave energy is abundant and has the potential to...
With 70% of the earth’s surface covered with water, wave energy is abundant and has the potential to...
With 70% of the earth’s surface covered with water, wave energy is abundant and has the potential to...
Abstract Harvesting energy from water, in the form of raindrops, river, and ocean waves, is of consi...
We report a flexible and area-scalable energy-harvesting technique for converting kinetic wave energ...
ABSTRACT: By converting ambient energy into electricity, energy harvesting is capable of at least of...
This paper reports a transparent flexible triboelectric generator for harvesting the energy from dro...
Bio-inspired superwetting interfaces can realize rapid transfer of liquid mass or momentum due to th...
A water droplet sensor based on a flow-through front surface electrode is demonstrated. It is shown ...
This paper evaluates the effect of water-dielectric interfaces for wave impact energy harvesting at ...
An energy-harvesting device based on water moving across the junction between a hydrophobic dielectr...
We invented a triboelectric nanogenerator (TENG) that is based on a wavy-structured Cu–Kapton–Cu fil...
Energy harvesting from ambient water motions is a desirable but underexplored solution to on-site en...
Energy harvesting from ambient water motions is a desirable but underexplored solution to on-site en...
Strategies toward harvesting energy from water movements are proposed in recent years. Reverse elect...
With 70% of the earth’s surface covered with water, wave energy is abundant and has the potential to...
With 70% of the earth’s surface covered with water, wave energy is abundant and has the potential to...
With 70% of the earth’s surface covered with water, wave energy is abundant and has the potential to...
Abstract Harvesting energy from water, in the form of raindrops, river, and ocean waves, is of consi...
We report a flexible and area-scalable energy-harvesting technique for converting kinetic wave energ...
ABSTRACT: By converting ambient energy into electricity, energy harvesting is capable of at least of...
This paper reports a transparent flexible triboelectric generator for harvesting the energy from dro...
Bio-inspired superwetting interfaces can realize rapid transfer of liquid mass or momentum due to th...
A water droplet sensor based on a flow-through front surface electrode is demonstrated. It is shown ...
This paper evaluates the effect of water-dielectric interfaces for wave impact energy harvesting at ...
An energy-harvesting device based on water moving across the junction between a hydrophobic dielectr...
We invented a triboelectric nanogenerator (TENG) that is based on a wavy-structured Cu–Kapton–Cu fil...