Energy harvesting, which converts wasted environmental energy into electricity by utilizing various physical effects, hasattracted tremendous research interests as is one of the key technologies to realize advanced electronics in the future. In this review, we introduce recent progress in the field of hybrid energy harvesting technology. In particular, we focus on a quantum dots (QD)‐based hybrid energy harvesting device. Attributed to fascinating material properties that QD possess, employment of QDs into hybrid energy harvesting has shown great potential for independent and sustainable energy supply.First, an integration of a QD solar cell into a mechanical energy harvester is discussed to harness different types of environmental energy s...
Photovoltaic cells use semiconductors to convert sunlight into electrical current and are regarded a...
From a niche field over 30 years ago, quantum dots (QDs) have developed into viable materials for ma...
Colloidal metal chalcogenide quantum dots (QDs) have excellent quantum efficiency in light–matter in...
Energy harvesting, which converts wasted environmental energy into electricity by utilizing various ...
Photocatalytic production of hydrogen from water can directly convert solar energy into chemical ene...
Realization of self-powered sensor systems is the key to accomplish internet of things technology fo...
Photocatalytic production of hydrogen from water can directly convert solar energy into chemical ene...
The essence of the photovoltaic effect is the generation of electric current with the help of light....
Photovoltaic energy conversion is one of the best alternatives to fossil fuel combustion. Petroleum ...
This work focuses on the utilisation of quantum dots (QDs) and resonance energy transfer to enhance ...
ABSTRACT: Solution-processed mesoscopic oxide semiconductor-based materials offer potentially low-co...
University of Minnesota Ph.D. dissertation. September 2009. Major: Chemical Engineering. Advisors: E...
The exponential increase in global energy demand in daily life prompts us to search for a bioresourc...
From a niche field over 30 years ago, quantum dots (QDs) have developed into viable materials for ma...
Our energy consumption relies heavily on the three components of fossil fuels (oil, natural gas and ...
Photovoltaic cells use semiconductors to convert sunlight into electrical current and are regarded a...
From a niche field over 30 years ago, quantum dots (QDs) have developed into viable materials for ma...
Colloidal metal chalcogenide quantum dots (QDs) have excellent quantum efficiency in light–matter in...
Energy harvesting, which converts wasted environmental energy into electricity by utilizing various ...
Photocatalytic production of hydrogen from water can directly convert solar energy into chemical ene...
Realization of self-powered sensor systems is the key to accomplish internet of things technology fo...
Photocatalytic production of hydrogen from water can directly convert solar energy into chemical ene...
The essence of the photovoltaic effect is the generation of electric current with the help of light....
Photovoltaic energy conversion is one of the best alternatives to fossil fuel combustion. Petroleum ...
This work focuses on the utilisation of quantum dots (QDs) and resonance energy transfer to enhance ...
ABSTRACT: Solution-processed mesoscopic oxide semiconductor-based materials offer potentially low-co...
University of Minnesota Ph.D. dissertation. September 2009. Major: Chemical Engineering. Advisors: E...
The exponential increase in global energy demand in daily life prompts us to search for a bioresourc...
From a niche field over 30 years ago, quantum dots (QDs) have developed into viable materials for ma...
Our energy consumption relies heavily on the three components of fossil fuels (oil, natural gas and ...
Photovoltaic cells use semiconductors to convert sunlight into electrical current and are regarded a...
From a niche field over 30 years ago, quantum dots (QDs) have developed into viable materials for ma...
Colloidal metal chalcogenide quantum dots (QDs) have excellent quantum efficiency in light–matter in...