Improved capacitive performance of the electrochemical energy storage devices can be achieved by manipulating the morphology of electroactive electrode material. Therefore, in the present work, the size and shape of microsheets of nickel phosphate electrode material are manipulated by varying hydrolyzing agent (urea) concentration in the chemical bath deposition method. Formation of hydrous nickel phosphate (Ni3(PO4)2·8H2O) in thin-film form over stainless steel substrate is confirmed by structural analysis, and change in microstructure from microsheets to nanosheets with hydrolyzing agent variation is observed in field emission scanning electron microscopy (FE-SEM) analysis. Strategically tuned ultrathin nanosheets of nickel phosphate deli...
A lightweight, flexible, and highly efficient energy management strategy is highly desirable for fle...
We report a versatile route for the preparation of metal phosphides using PH3 plasma for supercapaci...
To obtain a supercapacitor with a remarkable specific capacitance and rate performance, a cogent des...
This work presents the effect of different contents of graphene foam (GF) on the electrochemical ca...
Electrode materials for high-rate supercapacitors are greatly desired. Among actively studied electr...
<p>Energy storage technologies are crucial for efficient utilization of electricity. Supercapacitors...
This work demonstrates the successful self-assembly of amorphous nickel phosphate-based nanotubes in...
As the demand for green and sustainable energy increases, the advantages of high power density, inst...
This dissertation presents the synthesis and characterization of new types of nanostructured materia...
Three-dimensional free-standing film electrodes have aroused great interest for energy storage devic...
Nanoporous nickel hydroxide (Ni(OH)(2)) thin film was grown on the surface of ultrathin-graphite foa...
The nickel phosphate molecular sieve VSB-5 as an electrode material for supercapacitors is investiga...
The performance of a supercapattery depends on its energy density, rate capability of charge and dis...
A high-performance electrode for supercapacitors is designed and synthesized by growing electroactiv...
ABSTRACT: A series of flexible nanocomposite electrodes were fabricated by facile electro-deposition...
A lightweight, flexible, and highly efficient energy management strategy is highly desirable for fle...
We report a versatile route for the preparation of metal phosphides using PH3 plasma for supercapaci...
To obtain a supercapacitor with a remarkable specific capacitance and rate performance, a cogent des...
This work presents the effect of different contents of graphene foam (GF) on the electrochemical ca...
Electrode materials for high-rate supercapacitors are greatly desired. Among actively studied electr...
<p>Energy storage technologies are crucial for efficient utilization of electricity. Supercapacitors...
This work demonstrates the successful self-assembly of amorphous nickel phosphate-based nanotubes in...
As the demand for green and sustainable energy increases, the advantages of high power density, inst...
This dissertation presents the synthesis and characterization of new types of nanostructured materia...
Three-dimensional free-standing film electrodes have aroused great interest for energy storage devic...
Nanoporous nickel hydroxide (Ni(OH)(2)) thin film was grown on the surface of ultrathin-graphite foa...
The nickel phosphate molecular sieve VSB-5 as an electrode material for supercapacitors is investiga...
The performance of a supercapattery depends on its energy density, rate capability of charge and dis...
A high-performance electrode for supercapacitors is designed and synthesized by growing electroactiv...
ABSTRACT: A series of flexible nanocomposite electrodes were fabricated by facile electro-deposition...
A lightweight, flexible, and highly efficient energy management strategy is highly desirable for fle...
We report a versatile route for the preparation of metal phosphides using PH3 plasma for supercapaci...
To obtain a supercapacitor with a remarkable specific capacitance and rate performance, a cogent des...