Three-dimensional (3D) porous current collector is effective in enhancing the energy density per surface area of batteries and supercapacitors due to its ability for high mass loading of active materials and efficient electron and ion transport. Herein, we report a facile method to construct a nanoporous Ni architecture on the surfaces of flexible carbon cloth (Ni@CC). By electrodeposition of ultrathin MnOx nanosheets on the 3D Ni@CC nanoporous current collectors, we achieved an areal specific capacitance of 906.6 mF cm(-2) at 1 mA cm(-2), which is much higher than 353.2 mF cm(-2) using bare CC as the current collector. Employing the 3D MnOx@Ni@CC positive electrode and a chemically converted graphene (CCG) negative electrode, we assembled ...
Supercapacitors are called to play a prominent role in the newly emerging markets of electric vehicl...
A high contact resistance between the active materials and the current collector, a low ionic conduc...
Developing innovative energy storage platforms with long-lasting stability and high energy and power...
Three-dimensional (3D) nanostructures enable high-energy storage devices. Here we report a 3D mangan...
Extensive research efforts have recently been devoted to the development of high-energy-density flex...
ABSTRACT: A type of freestanding three-dimensional (3D) micro/nanointerconnected structure, with a c...
Three-dimensional (3D) nanostructures enable high-energy storage devices. Here we report a 3D mangan...
© 2018 All-solid-state flexible supercapacitors have shown great potential in wearable and portable ...
To reach high energy density and excellent cycle stability, an asymmetric supercapacitor device comb...
Three-dimensional (3D) electrodes are critical for enabling high-performance power sources. We repor...
To achieve flexible energy storage devices with high performance, a new class of flexible electrodes...
The practical applications of flexible supercapacitor depend strongly on the successful fabrication ...
CNT/MnO2/graphene-grafted carbon cloth electrode is designed and achieves high MnO2 mass loading (9....
The demand for portable electronic devices is driving the development of flexible supercapacitor, wh...
We report the design of all-solid-state asymmetric supercapacitors based on free-standing carbon nan...
Supercapacitors are called to play a prominent role in the newly emerging markets of electric vehicl...
A high contact resistance between the active materials and the current collector, a low ionic conduc...
Developing innovative energy storage platforms with long-lasting stability and high energy and power...
Three-dimensional (3D) nanostructures enable high-energy storage devices. Here we report a 3D mangan...
Extensive research efforts have recently been devoted to the development of high-energy-density flex...
ABSTRACT: A type of freestanding three-dimensional (3D) micro/nanointerconnected structure, with a c...
Three-dimensional (3D) nanostructures enable high-energy storage devices. Here we report a 3D mangan...
© 2018 All-solid-state flexible supercapacitors have shown great potential in wearable and portable ...
To reach high energy density and excellent cycle stability, an asymmetric supercapacitor device comb...
Three-dimensional (3D) electrodes are critical for enabling high-performance power sources. We repor...
To achieve flexible energy storage devices with high performance, a new class of flexible electrodes...
The practical applications of flexible supercapacitor depend strongly on the successful fabrication ...
CNT/MnO2/graphene-grafted carbon cloth electrode is designed and achieves high MnO2 mass loading (9....
The demand for portable electronic devices is driving the development of flexible supercapacitor, wh...
We report the design of all-solid-state asymmetric supercapacitors based on free-standing carbon nan...
Supercapacitors are called to play a prominent role in the newly emerging markets of electric vehicl...
A high contact resistance between the active materials and the current collector, a low ionic conduc...
Developing innovative energy storage platforms with long-lasting stability and high energy and power...