Recently, self-powered wearable electronics have gained interest among scientists globally because of the numerous configurations available for portable and small power devices. The current research explores the fabrication of flexible devices under the principle of piezo-electric transducers. The materials used in fabrication were versatile dielectric and electro-active silicone rubber (SR) and multiwalled carbon nanotubes (MWCNT). The tensile moduli of the MWCNT 5 parts per hundred rubber (phr) and unfilled samples are 2.034 and 0.711 MPa, respectively. Adding MWCNT up to 5 phr improved the voltage output of piezo-electric material under mechanical deformation. Energy-harvesting experiments showed that compressive specimens produced 3250%...
Recent advancements in wearable technology have improved lifestyle and medical practices, enabling p...
Applying flexible materials for energy scavenging from ambient mechanical vibrations is a clean ener...
Piezoelectric materials are capable of converting energy from mechanical vibration to electrical ene...
Recently, self-powered wearable electronics have gained interest among scientists globally because o...
A new technique based on the plucking of flexible piezoelectric material can be used to boost energ...
In the ongoing fourth industrial revolution, the internet of things (IoT) will play a crucial role i...
s wearable electronics are rapidly increasing, more recently, efforts have been focused on developin...
New technologies are constantly addressed in the scientific community for updating novel stretchable...
AbstractRecent advances in materials science and mechanical engineering enable the realization of hi...
Developing methods for energy harvesting from the human body is a research field that can offer rema...
Mechanical vibrations from heavy machines, building structures or the human body can be harvested an...
Harvesting of wasted mechanical energy is increasingly important for powering wearable electronics i...
Harvesting energy from human motion to power wearable devices using flexible piezoelectric energy ha...
Mechanical energy is one of the readily accessible green energy sources that could be employed to me...
Dielectric elastomer transducers (DETs), essentially consisting of highly deformable insulating film...
Recent advancements in wearable technology have improved lifestyle and medical practices, enabling p...
Applying flexible materials for energy scavenging from ambient mechanical vibrations is a clean ener...
Piezoelectric materials are capable of converting energy from mechanical vibration to electrical ene...
Recently, self-powered wearable electronics have gained interest among scientists globally because o...
A new technique based on the plucking of flexible piezoelectric material can be used to boost energ...
In the ongoing fourth industrial revolution, the internet of things (IoT) will play a crucial role i...
s wearable electronics are rapidly increasing, more recently, efforts have been focused on developin...
New technologies are constantly addressed in the scientific community for updating novel stretchable...
AbstractRecent advances in materials science and mechanical engineering enable the realization of hi...
Developing methods for energy harvesting from the human body is a research field that can offer rema...
Mechanical vibrations from heavy machines, building structures or the human body can be harvested an...
Harvesting of wasted mechanical energy is increasingly important for powering wearable electronics i...
Harvesting energy from human motion to power wearable devices using flexible piezoelectric energy ha...
Mechanical energy is one of the readily accessible green energy sources that could be employed to me...
Dielectric elastomer transducers (DETs), essentially consisting of highly deformable insulating film...
Recent advancements in wearable technology have improved lifestyle and medical practices, enabling p...
Applying flexible materials for energy scavenging from ambient mechanical vibrations is a clean ener...
Piezoelectric materials are capable of converting energy from mechanical vibration to electrical ene...