This Article reports methods to deposit iridium oxide nanoparticles (IrOx NPs) onto flexible materials for charge storage and the stable charge–discharge mechanism. In this work, IrOx NPs were electrodeposited onto commercially available flexible surfaces of both knit and nonwoven cotton and nonwoven carbon-based (carbon nanotubes and graphene) textile substrates. Carbon-coated cotton materials were fabricated by reducing graphene oxide on fabric. Flexible electrode materials were fabricated by either reducing graphene oxide on cotton fabric or binding carbon nanotubes/graphene into a free-standing platform. The IrOx NPs were then electrodeposited onto flexible platform samples by applying a positive potential to the fabric. After depositio...
This thesis presents work relating to the fabrication of novel thin film electrodes for energy stora...
Textile yarns undergo modifications for use in various smart applications such as energy storage, se...
Highly flexible and electrically-conductive multifunctional textiles are desirable for use in wearab...
Trabajo presentado en la 5th Zing Conference in BioNanomaterials, celebrada en Carvoeiro, Portugal, ...
This article belongs to the Special Issue Electrochemical Applications of Carbon-Based Nanomaterials...
Textile electrodes are highly desirable for wearable electronics as they offer light-weight, flexibi...
The rise of wearable electronics is increasing the demand of flexible energy storage devices, whereb...
Wearable rechargeable batteries require electrode platforms that can withstand various physical moti...
The development of flexible electrodes is of considerable current interest because of the increasing...
The development of flexible electrodes is of considerable current interest because of the increasing...
Using a simple electrochemical deposition (ECD) method, β-nickel hydroxide (β-Ni(OH)<sub>2</sub>) n...
A surface nanosculpturing is performed on twill wave carbon fibers patches by means of hydrogen plas...
Activated cotton textile (ACT) with porous tubular fibers embedded with NiS<sub>2</sub> nanobowls an...
Graphene oxide has been used widely as a starting precursor for applications that cater to the needs...
<p>The development of electronic textiles, which have many potential healthcare and consumer applica...
This thesis presents work relating to the fabrication of novel thin film electrodes for energy stora...
Textile yarns undergo modifications for use in various smart applications such as energy storage, se...
Highly flexible and electrically-conductive multifunctional textiles are desirable for use in wearab...
Trabajo presentado en la 5th Zing Conference in BioNanomaterials, celebrada en Carvoeiro, Portugal, ...
This article belongs to the Special Issue Electrochemical Applications of Carbon-Based Nanomaterials...
Textile electrodes are highly desirable for wearable electronics as they offer light-weight, flexibi...
The rise of wearable electronics is increasing the demand of flexible energy storage devices, whereb...
Wearable rechargeable batteries require electrode platforms that can withstand various physical moti...
The development of flexible electrodes is of considerable current interest because of the increasing...
The development of flexible electrodes is of considerable current interest because of the increasing...
Using a simple electrochemical deposition (ECD) method, β-nickel hydroxide (β-Ni(OH)<sub>2</sub>) n...
A surface nanosculpturing is performed on twill wave carbon fibers patches by means of hydrogen plas...
Activated cotton textile (ACT) with porous tubular fibers embedded with NiS<sub>2</sub> nanobowls an...
Graphene oxide has been used widely as a starting precursor for applications that cater to the needs...
<p>The development of electronic textiles, which have many potential healthcare and consumer applica...
This thesis presents work relating to the fabrication of novel thin film electrodes for energy stora...
Textile yarns undergo modifications for use in various smart applications such as energy storage, se...
Highly flexible and electrically-conductive multifunctional textiles are desirable for use in wearab...