Recently, there has been a surge of interest in nanogenerators within the scientific community because their immense potential for extracting energy from the surrounding environment. A promising approach involves utilizing ambient moisture as an energy source for portable devices. In this study, moisture-enabled nanogenerators (MENGs) are devised by integrating heterojunctions of graphene oxide (GO) and reduced graphene oxide (rGO). Benefiting from the unique structure, a larger ion concentration gradient is achieved as well as a lower resistance, which leads to enhanced electricity generation. The resulting MENG generates a desirable open-circuit voltage of 0.76 V and a short-circuit current density of 73 µA cm−2 with a maximum power densi...
As a novel energy harvesting method, generating electricity from the interaction of liquid-solid int...
Moore's law has defined the semiconductor industry for the past 50 years. Devices continue to become...
A novel flexible three-dimensional (3D) architecture of nitrogen and sulfur codoped graphene has bee...
Harvesting energy from ubiquitous moisture is attracting growing interest for directly powering elec...
This study reports a concept of a planar hygroelectric generator fabricated by nanosized graphene ox...
A high-performance moisture triggered nanogenerator is fabricated by using graphene quantum dots (GQ...
Abstract Existing devices for generating electrical power from water vapor in ambient air require hi...
Wearable technologies are driving current research efforts to self-powered electronics, for which no...
This paper presents a new high-output, flexible and transparent nanogenerator using CVD grown graphe...
This paper presents a new high-output, flexible and transparent nanogenerator using chemical vapor d...
Graphene is regarded as the ultimate material for future flexible, highperformance, and wearable ele...
The unique characteristics of graphene have generated a lot of interest in the research community. A...
Graphene is regarded as the ultimate material for future flexible, high‐performance, and wearable el...
This is the author accepted manuscript. The final version is available from Wiley via the DOI in thi...
Owing to the limited deformability and restricted scalability of traditional triboelectric nanogener...
As a novel energy harvesting method, generating electricity from the interaction of liquid-solid int...
Moore's law has defined the semiconductor industry for the past 50 years. Devices continue to become...
A novel flexible three-dimensional (3D) architecture of nitrogen and sulfur codoped graphene has bee...
Harvesting energy from ubiquitous moisture is attracting growing interest for directly powering elec...
This study reports a concept of a planar hygroelectric generator fabricated by nanosized graphene ox...
A high-performance moisture triggered nanogenerator is fabricated by using graphene quantum dots (GQ...
Abstract Existing devices for generating electrical power from water vapor in ambient air require hi...
Wearable technologies are driving current research efforts to self-powered electronics, for which no...
This paper presents a new high-output, flexible and transparent nanogenerator using CVD grown graphe...
This paper presents a new high-output, flexible and transparent nanogenerator using chemical vapor d...
Graphene is regarded as the ultimate material for future flexible, highperformance, and wearable ele...
The unique characteristics of graphene have generated a lot of interest in the research community. A...
Graphene is regarded as the ultimate material for future flexible, high‐performance, and wearable el...
This is the author accepted manuscript. The final version is available from Wiley via the DOI in thi...
Owing to the limited deformability and restricted scalability of traditional triboelectric nanogener...
As a novel energy harvesting method, generating electricity from the interaction of liquid-solid int...
Moore's law has defined the semiconductor industry for the past 50 years. Devices continue to become...
A novel flexible three-dimensional (3D) architecture of nitrogen and sulfur codoped graphene has bee...