Metal nanowire nonwoven cloth (MNNC) is a metal sheet that has resulted from intertwined metal nanowires 100 nm in diameter with several dozen micrometers of length. Thus, it is a new metallic material having both a flexibility of the metal sheet and a large specific surface area of the nanowires. As an application that utilizes these properties, we propose a high-cyclability electrode for Li storage batteries, in which an active material is deposited or coated on MNNC. The proposed electrode can work without any binders, conductive additives, and current collectors, which might largely improve a practical gravimetric energy density. Huge electrode surfaces provide efficient ion/electron transports, and sufficient interspaces between the re...
Hindered by dendrite growth, unceasing volume change and repeated regeneration of solid-state electr...
A highly flexible supercapacitor is fabricated through a simple solution-based method in which confo...
Three-dimensional (3D) conductive network electrodes based on commercial nickel foam current collect...
Textile-based flexible Lithium-Ion Batteries (LIBs) show promising mechanical flexibility that is ap...
Despite extensive research on flexible/wearable power sources, their structural stability and electr...
Rechargeable lithium–oxygen (Li–O<sub>2</sub>) batteries are consequently considered to be an attrac...
There have been growing interests in developing high-capacity, high-power, and long-cycle-life lithi...
Although the highest combined energy and power density of rechargeable lithium-ion (Li-ion) batterie...
Wearable rechargeable batteries require electrode platforms that can withstand various physical moti...
Nanowire arrays present an excellent candidate for high performance lithium-ion battery electrodes. ...
Electrodes with a nanostructured surface based on nickel micro- and nanowires have wide application ...
This master thesis has the aim of finding out the feasibility of 3D interconnected nanowires network...
Driven by the flourishing of renewable energy sources and increasing demands of portable electronics...
Li metal anode is deemed the most promising candidate anode for high-energy battery systems such as ...
Metal foams are utilized in various applications, such as in the automotive industries and electroch...
Hindered by dendrite growth, unceasing volume change and repeated regeneration of solid-state electr...
A highly flexible supercapacitor is fabricated through a simple solution-based method in which confo...
Three-dimensional (3D) conductive network electrodes based on commercial nickel foam current collect...
Textile-based flexible Lithium-Ion Batteries (LIBs) show promising mechanical flexibility that is ap...
Despite extensive research on flexible/wearable power sources, their structural stability and electr...
Rechargeable lithium–oxygen (Li–O<sub>2</sub>) batteries are consequently considered to be an attrac...
There have been growing interests in developing high-capacity, high-power, and long-cycle-life lithi...
Although the highest combined energy and power density of rechargeable lithium-ion (Li-ion) batterie...
Wearable rechargeable batteries require electrode platforms that can withstand various physical moti...
Nanowire arrays present an excellent candidate for high performance lithium-ion battery electrodes. ...
Electrodes with a nanostructured surface based on nickel micro- and nanowires have wide application ...
This master thesis has the aim of finding out the feasibility of 3D interconnected nanowires network...
Driven by the flourishing of renewable energy sources and increasing demands of portable electronics...
Li metal anode is deemed the most promising candidate anode for high-energy battery systems such as ...
Metal foams are utilized in various applications, such as in the automotive industries and electroch...
Hindered by dendrite growth, unceasing volume change and repeated regeneration of solid-state electr...
A highly flexible supercapacitor is fabricated through a simple solution-based method in which confo...
Three-dimensional (3D) conductive network electrodes based on commercial nickel foam current collect...