As a substitute for rigid sensors, flexible sensing materials have been greatly developed in recent years, but maintaining the stability of conductive fillers and the stability of micro-strain sensing is still a major challenge. In this experiment, we innovatively prepared a polyurethane-based cellulose acetate composite membrane (CA/TPU) with abundant mesopores through electrospinning. Then, we reduced graphene oxide (rGO)—as a conductive filler—and graphene oxide (GO)—as an insulating layer—which were successively and firmly anchored on the CA/TPU nanofiber membrane with the ultrasonic impregnation method, to obtain an rGO/GO@CA/TPU sensor with a GF of 3.006 under a very small strain of 0.5%. The flexibility of the film and its high sensi...
In this work, new highly sensitive graphene-based flexible strain sensors are produced. In particula...
Flexible strain sensors have attracted considerable attention due to their applications in wearable ...
Developing stretchable/wearable strain sensors in different application scenarios is a global demand...
A flexible strain sensor with excellent mechanical and electrical properties was fabricated by depos...
In this paper, reduced graphene oxide (rGO), decorated with immobilized carbon nanotubes (CNTs), was...
This work developed a facile approach to fabricate highly sensitive and flexible polyurethane/graphe...
Flexible strain sensors have attracted extensive research interest in health monitoring and early di...
The development of flexible and stretchable electronic skins that can mimic the complex characterist...
Advanced flexible strain sensors for human motion detection and other potential use have attracted g...
Fiber-based strain sensors have attracted widespread concern of researchers due to large specific su...
Flexible strain sensors based on epoxy/graphene composite film with long molecular weight curing age...
We are reporting, a novel reduced graphene oxide (RGO) and silver (Ag) nanocomposite based piezoresi...
Recently, the detection of human motion has attracted considerable attention for the development of ...
In this work, new highly sensitive graphene-based flexible strain sensors are produced. In particula...
Recent advances in wearable electronics, technical textiles, and wearable strain sensing devices hav...
In this work, new highly sensitive graphene-based flexible strain sensors are produced. In particula...
Flexible strain sensors have attracted considerable attention due to their applications in wearable ...
Developing stretchable/wearable strain sensors in different application scenarios is a global demand...
A flexible strain sensor with excellent mechanical and electrical properties was fabricated by depos...
In this paper, reduced graphene oxide (rGO), decorated with immobilized carbon nanotubes (CNTs), was...
This work developed a facile approach to fabricate highly sensitive and flexible polyurethane/graphe...
Flexible strain sensors have attracted extensive research interest in health monitoring and early di...
The development of flexible and stretchable electronic skins that can mimic the complex characterist...
Advanced flexible strain sensors for human motion detection and other potential use have attracted g...
Fiber-based strain sensors have attracted widespread concern of researchers due to large specific su...
Flexible strain sensors based on epoxy/graphene composite film with long molecular weight curing age...
We are reporting, a novel reduced graphene oxide (RGO) and silver (Ag) nanocomposite based piezoresi...
Recently, the detection of human motion has attracted considerable attention for the development of ...
In this work, new highly sensitive graphene-based flexible strain sensors are produced. In particula...
Recent advances in wearable electronics, technical textiles, and wearable strain sensing devices hav...
In this work, new highly sensitive graphene-based flexible strain sensors are produced. In particula...
Flexible strain sensors have attracted considerable attention due to their applications in wearable ...
Developing stretchable/wearable strain sensors in different application scenarios is a global demand...