With the rapid growth of numerous portable electronics, it is critical to develop high-performance, lightweight, and environmentally sustainable energy generation and power supply systems. The flexible nanogenerators, including piezoelectric nanogenerators (PENG) and triboelectric nanogenerators (TENG), are currently viable candidates for combination with personal devices and wireless sensors to achieve sustained energy for long-term working circumstances due to their great mechanical qualities, superior environmental adaptability, and outstanding energy-harvesting performance. Conductive materials for electrode as the critical component in nanogenerators, have been intensively investigated to optimize their performance and avoid high-cost ...
As an emerging branch of energy conversion technologies, the triboelectric nanogenerator (TENG) pion...
Natural sources of green energy include sunshine, water, biomass, geothermal heat, and wind. These e...
Piezoelectric nanogenerator (PENG) was first introduced by using piezoelectric nanowires for convert...
Technologies for energy harvesting from objects in motion are gaining a continuously increasing inte...
Harvesting energy from ambient mechanical sources in our environment has attracted considerable inte...
In this age of advanced smartphones and wearable devices, the need of unlimited power has become a b...
This chapter reviews the progress of research development in soft and flexible electric generators f...
Piezoelectric nanogenerators are attracting substantial attention due to the environmental constrain...
Mechanical energy sources are abundant in our living environment, such as body motion, vehicle trans...
Piezoelectric materials are widely referred to as “smart” materials because they can transduce mecha...
Triboelectric nanogenerators (TENGs) have recently become a powerful technology for energy harvestin...
© 2021 Elsevier B.V.Textile-based devices have attracted great attention in wearable electronics wit...
Piezoelectric materials are widely referred to as "smart" materials because they can transduce mecha...
Electronics wastes (e-wastes) are the major concern in the rapid expansion of smart/wearable/portabl...
Wearable sensors are gaining attention in human health monitoring applications, even if their usabil...
As an emerging branch of energy conversion technologies, the triboelectric nanogenerator (TENG) pion...
Natural sources of green energy include sunshine, water, biomass, geothermal heat, and wind. These e...
Piezoelectric nanogenerator (PENG) was first introduced by using piezoelectric nanowires for convert...
Technologies for energy harvesting from objects in motion are gaining a continuously increasing inte...
Harvesting energy from ambient mechanical sources in our environment has attracted considerable inte...
In this age of advanced smartphones and wearable devices, the need of unlimited power has become a b...
This chapter reviews the progress of research development in soft and flexible electric generators f...
Piezoelectric nanogenerators are attracting substantial attention due to the environmental constrain...
Mechanical energy sources are abundant in our living environment, such as body motion, vehicle trans...
Piezoelectric materials are widely referred to as “smart” materials because they can transduce mecha...
Triboelectric nanogenerators (TENGs) have recently become a powerful technology for energy harvestin...
© 2021 Elsevier B.V.Textile-based devices have attracted great attention in wearable electronics wit...
Piezoelectric materials are widely referred to as "smart" materials because they can transduce mecha...
Electronics wastes (e-wastes) are the major concern in the rapid expansion of smart/wearable/portabl...
Wearable sensors are gaining attention in human health monitoring applications, even if their usabil...
As an emerging branch of energy conversion technologies, the triboelectric nanogenerator (TENG) pion...
Natural sources of green energy include sunshine, water, biomass, geothermal heat, and wind. These e...
Piezoelectric nanogenerator (PENG) was first introduced by using piezoelectric nanowires for convert...