The unique characteristics of graphene have generated a lot of interest in the research community. A concept of utilizing graphene and its derivatives in the development of energy harvesters has just appeared in recent decades. This paper focuses on the application of reduced graphene oxide (rGO), a graphene derivative, in the development of wearable mechanical energy-harvesters to enable self-powered wearable sensing systems. Harvesting of energy has been a state-of-the-art phenomenon due to the ever-increasing requirement of power to run the sensing systems. Flexible systems that used rGO to gather energy with intensities ranging from a few microwatts to a few hundreds of microwatts have been used. Some examples are presented, focusing on...
In austere environments, for example, in outer space, on surfaces of extra-terrestrial bodies (Moon,...
In this paper, we report a robust and a low-cost spin coating approach for fabrication of large area...
Wearable technologies are driving current research efforts to self-powered electronics, for which no...
We present a versatile sensing platform, intended for ubiquitous and flexible electronics sensing ap...
Abstract The applications of triboelectric nanogenerators (TENGs) in wearable electronics for energy...
In the new era of modern flexible and bendable technology, graphene-based materials have attracted g...
Energy harvesting devices based on the triboelectric and piezoelectric principles have been widely d...
Recent advancements in wearable technology have improved lifestyle and medical practices, enabling p...
This study reports a concept of a planar hygroelectric generator fabricated by nanosized graphene ox...
This article presents a comprehensive review on the recent development of graphene and its derivativ...
Recently, there has been a surge of interest in nanogenerators within the scientific community becau...
Graphene-based wearable e-textiles are considered to be promising due to their advantages over tradi...
In austere environments, for example, in outer space, on surfaces of extra-terrestrial bodies (Moon...
This work presents a versatile sensing platform, intended for ubiquitous and flexible electronics ba...
Wearable technology represents a new technological paradigm for promoting physical activity, enablin...
In austere environments, for example, in outer space, on surfaces of extra-terrestrial bodies (Moon,...
In this paper, we report a robust and a low-cost spin coating approach for fabrication of large area...
Wearable technologies are driving current research efforts to self-powered electronics, for which no...
We present a versatile sensing platform, intended for ubiquitous and flexible electronics sensing ap...
Abstract The applications of triboelectric nanogenerators (TENGs) in wearable electronics for energy...
In the new era of modern flexible and bendable technology, graphene-based materials have attracted g...
Energy harvesting devices based on the triboelectric and piezoelectric principles have been widely d...
Recent advancements in wearable technology have improved lifestyle and medical practices, enabling p...
This study reports a concept of a planar hygroelectric generator fabricated by nanosized graphene ox...
This article presents a comprehensive review on the recent development of graphene and its derivativ...
Recently, there has been a surge of interest in nanogenerators within the scientific community becau...
Graphene-based wearable e-textiles are considered to be promising due to their advantages over tradi...
In austere environments, for example, in outer space, on surfaces of extra-terrestrial bodies (Moon...
This work presents a versatile sensing platform, intended for ubiquitous and flexible electronics ba...
Wearable technology represents a new technological paradigm for promoting physical activity, enablin...
In austere environments, for example, in outer space, on surfaces of extra-terrestrial bodies (Moon,...
In this paper, we report a robust and a low-cost spin coating approach for fabrication of large area...
Wearable technologies are driving current research efforts to self-powered electronics, for which no...