Multilayer assemblies of uniform ultrathin film electrodes with good electrical conductivity and very large surface areas were prepared for use as electrochemical capacitors. A layer-by-layer self-assembly approach was employed in an effort to improve the processability of highly conducting polyaniline (PANi) and chemically modified graphene. The electrochemical properties of the multilayer film (MF-) electrodes, including the sheet resistance, volumetric capacitance, and charge/discharge ratio, were determined by the morphological modification and the method used to reduce the graphene oxide (GO) to reduced graphene oxide (RGO) in the multilayer films. The PANi and GO concentrations could be modulated to control the morphology of the GO mo...
This article describes the preparation, using layer-by-layer deposition techniques, of an all-solid-...
Fiber-shaped supercapacitors are promising and attractive candidates as energy storage devices for f...
Hybrid electrode comprising an electric double-layer capacitor of graphene nanosheets and a pseudoca...
Multilayer films of polyaniline (PANI) and graphene oxide (GO) were deposited on indium tin oxide (I...
Multilayer films of polyaniline (PANI) and graphene oxide (GO) were deposited on indium tin oxide (I...
To maximize the utilization of its single-atom thin nature, a facile scheme to fabricate graphene mu...
To maximize the utilization of its single-atom thin nature, a facile scheme to fabricate graphene mu...
Face-to-face restacking is one of the main reasons for low surface utilization of multilayered graph...
A hybrid electrode consisting of an electric double-layer capacitor of graphene nanosheets and a pse...
Electrochemical supercapacitors are highly potential and environment-friendly storage system that wi...
In this article, we described about the preparation and electrochemical properties of a flexible ene...
Ultrathin electrodes composed of layer-by-layer as-sembled (3-aminopropyl)trimethoxysilane functiona...
Supercapacitors are well known for their improvised power density compared to batteries. Ongoing res...
Both polyaniline (PANI) and graphene are widely studied for their application as capacitive electrod...
Ultrathin electrodes composed of layer-by-layer assembled (3-aminopropyl)trimethoxysilane functiona...
This article describes the preparation, using layer-by-layer deposition techniques, of an all-solid-...
Fiber-shaped supercapacitors are promising and attractive candidates as energy storage devices for f...
Hybrid electrode comprising an electric double-layer capacitor of graphene nanosheets and a pseudoca...
Multilayer films of polyaniline (PANI) and graphene oxide (GO) were deposited on indium tin oxide (I...
Multilayer films of polyaniline (PANI) and graphene oxide (GO) were deposited on indium tin oxide (I...
To maximize the utilization of its single-atom thin nature, a facile scheme to fabricate graphene mu...
To maximize the utilization of its single-atom thin nature, a facile scheme to fabricate graphene mu...
Face-to-face restacking is one of the main reasons for low surface utilization of multilayered graph...
A hybrid electrode consisting of an electric double-layer capacitor of graphene nanosheets and a pse...
Electrochemical supercapacitors are highly potential and environment-friendly storage system that wi...
In this article, we described about the preparation and electrochemical properties of a flexible ene...
Ultrathin electrodes composed of layer-by-layer as-sembled (3-aminopropyl)trimethoxysilane functiona...
Supercapacitors are well known for their improvised power density compared to batteries. Ongoing res...
Both polyaniline (PANI) and graphene are widely studied for their application as capacitive electrod...
Ultrathin electrodes composed of layer-by-layer assembled (3-aminopropyl)trimethoxysilane functiona...
This article describes the preparation, using layer-by-layer deposition techniques, of an all-solid-...
Fiber-shaped supercapacitors are promising and attractive candidates as energy storage devices for f...
Hybrid electrode comprising an electric double-layer capacitor of graphene nanosheets and a pseudoca...