This work demonstrates the successful self-assembly of amorphous nickel phosphate-based nanotubes into two-dimensional (2D) crumpled sheet-like architectures for the first time by employing nickel glycerate particles as sacrificial templates through a two-step phosphoric acid-assisted solvothermal method. A “self-deconstruction-self-weaving” mechanism is believed to be responsible for the formation of such nanotube-assembled crumpled sheet-like architecture from the nickel glycerate template. The asymmetric supercapacitor (ASC) device assembled using nanotube-assembled amorphous 2D nickel phosphate (NiHPi-500) as the positive electrode and activated carbon (AC) as the negative electrode exhibits high energy densities of 50 W h kg-1, 40 W h ...
Highly conductive and stable electrode materials are usually the focus of high-performance supercapa...
Thermal exfoliation of graphite oxide is a scalable way to produce macroscopic amount of defective g...
Supercapacitors as a new energy techonology have aroused much attention because of their wide applic...
This work demonstrates the successful self-assembly of amorphous nickel phosphate-based nanotubes in...
To obtain a supercapacitor with a remarkable specific capacitance and rate performance, a cogent des...
This study demonstrates the tailorable self-weaving of bimetallic nickel–cobalt (Ni–Co) hydrogen pho...
High performance supercapacitors are designed based on hierarchical Ni(OH)(2) nanosponges anchored o...
Exploring faster, safer, and more efficient energy storage devices will motivate scientists to devel...
Improved capacitive performance of the electrochemical energy storage devices can be achieved by man...
The utilization of Ni(OH)2 as a pseudocapacitive material for high performance supercapacitors is hi...
A novel hierarchical nanotube array (NTA) with a massive layered top and discretely separated nanotu...
The design and development of nanomaterial has become central to the advancement of pseudocapacitive...
This work presents the effect of different contents of graphene foam (GF) on the electrochemical ca...
Overcoming the global energy crisis due to vast economic expansion with the advent of human reliance...
Cost-effective commercial expanded graphite (EG) was used as a raw material, and a facile in-situ el...
Highly conductive and stable electrode materials are usually the focus of high-performance supercapa...
Thermal exfoliation of graphite oxide is a scalable way to produce macroscopic amount of defective g...
Supercapacitors as a new energy techonology have aroused much attention because of their wide applic...
This work demonstrates the successful self-assembly of amorphous nickel phosphate-based nanotubes in...
To obtain a supercapacitor with a remarkable specific capacitance and rate performance, a cogent des...
This study demonstrates the tailorable self-weaving of bimetallic nickel–cobalt (Ni–Co) hydrogen pho...
High performance supercapacitors are designed based on hierarchical Ni(OH)(2) nanosponges anchored o...
Exploring faster, safer, and more efficient energy storage devices will motivate scientists to devel...
Improved capacitive performance of the electrochemical energy storage devices can be achieved by man...
The utilization of Ni(OH)2 as a pseudocapacitive material for high performance supercapacitors is hi...
A novel hierarchical nanotube array (NTA) with a massive layered top and discretely separated nanotu...
The design and development of nanomaterial has become central to the advancement of pseudocapacitive...
This work presents the effect of different contents of graphene foam (GF) on the electrochemical ca...
Overcoming the global energy crisis due to vast economic expansion with the advent of human reliance...
Cost-effective commercial expanded graphite (EG) was used as a raw material, and a facile in-situ el...
Highly conductive and stable electrode materials are usually the focus of high-performance supercapa...
Thermal exfoliation of graphite oxide is a scalable way to produce macroscopic amount of defective g...
Supercapacitors as a new energy techonology have aroused much attention because of their wide applic...