Given the operation conditions wherein mechanical wear is inevitable, modifying bulk properties of the dielectric layer of a triboelectric nanogenerator (TENG) has been highlighted to boost its energy output. However, several concerns still remain in regards to the modification due to high-cost materials and cumbersome processes being required. Herein, we report TENG with a microstructured Al electrode (TENG_ME) as a new approach to modifying bulk properties of the dielectric layer. The microstructured Al electrode is utilized as a component of TENG to increase the interfacial area between the dielectric layer and electrode. Compared to the TENG with a flat Al electrode (TENG_F), the capacitance of TENG_ME is about 1.15 times higher than th...
Abstract Harvesting abundant mechanical energy has been considered one of the promising technologies...
Triboelectric nanogenerators (TENGs) is a term used to describe harvested electricity made by the us...
In this study, we have enhanced the electricity generation capacity of a silicone and glass fiber-ba...
MasterGiven the operation conditions where mechanical wear is inevitable, modifying bulk properties ...
As a promising candidate for wearable power sources, it is essential to explore new-type of triboele...
Triboelectric nanogenerators (TENG), which utilize contact electrification of two different material...
For existing triboelectric nanogenerators ( TENGs), it is important to explore unique methods to fur...
High relative permittivity and low dielectric loss are two desired parameters of a triboelectric lay...
Triboelectric Nanogenerators (TENGs) are a highly efficient approach for mechanical-to-electrical en...
DoctorDemand for wireless and wearable devices has influenced energy harvesting of activity in daily...
Mechanical energy is one of the most ubiquitous energies in our surroundings, which can be converted...
To meet the future need for clean and sustainable energies, there has been considerable interest in ...
Triboelectric nanogenerator (TENG) is a promising strategy for harvesting low frequency mechanical e...
A triboelectric nanogenerator (TENG) is a potential solution for providing high output power by cont...
Understanding of the triboelectric charge accumulation from the view of materials plays a critical r...
Abstract Harvesting abundant mechanical energy has been considered one of the promising technologies...
Triboelectric nanogenerators (TENGs) is a term used to describe harvested electricity made by the us...
In this study, we have enhanced the electricity generation capacity of a silicone and glass fiber-ba...
MasterGiven the operation conditions where mechanical wear is inevitable, modifying bulk properties ...
As a promising candidate for wearable power sources, it is essential to explore new-type of triboele...
Triboelectric nanogenerators (TENG), which utilize contact electrification of two different material...
For existing triboelectric nanogenerators ( TENGs), it is important to explore unique methods to fur...
High relative permittivity and low dielectric loss are two desired parameters of a triboelectric lay...
Triboelectric Nanogenerators (TENGs) are a highly efficient approach for mechanical-to-electrical en...
DoctorDemand for wireless and wearable devices has influenced energy harvesting of activity in daily...
Mechanical energy is one of the most ubiquitous energies in our surroundings, which can be converted...
To meet the future need for clean and sustainable energies, there has been considerable interest in ...
Triboelectric nanogenerator (TENG) is a promising strategy for harvesting low frequency mechanical e...
A triboelectric nanogenerator (TENG) is a potential solution for providing high output power by cont...
Understanding of the triboelectric charge accumulation from the view of materials plays a critical r...
Abstract Harvesting abundant mechanical energy has been considered one of the promising technologies...
Triboelectric nanogenerators (TENGs) is a term used to describe harvested electricity made by the us...
In this study, we have enhanced the electricity generation capacity of a silicone and glass fiber-ba...