Bimetal phosphates, especially those with hollow structures, have been recognized as promising materials for energy storage application. However, research on hollow bimetal phosphates is quite rare because of the difficulty in controlling the preparation process. In this work, through a shell-coating and then controllable etching process, a nonspherical hollow bimetal (Co/Ni) phosphate nanocage (named ZIF-67-LDH-CNP-110) is successfully constructed for the first time, to the best of our knowledge. When utilized as an electrode material for supercapacitor application, the as-prepared nanocages exhibit a high specific capacitance of 1616 F g–1 at 1 A g–1 and excellent ratio capability of remaining 80.32% of initial capacitance at a high curre...
Recently, transition metal phosphates (TMPs) are demonstrated as promising candidates for supercapac...
For this project, metal-rich cobalt phosphides (e.g., orthorhombic Co2P) are first explored as poten...
Recently, transition metal phosphates (TMPs) are demonstrated as promising candidates for supercapac...
Electrode materials for high-rate supercapacitors are greatly desired. Among actively studied electr...
Development of electrode materials with faster charge kinetics and high electrical conductivity are ...
Most reported pristine phosphates, such as NH4MPO4·H2O (M = Co, Ni), are not very stable as supercap...
It is extremely urgent to develop novel electrode materials with large capacity, high charge–dischar...
Energy storage system based on supercapacitors has recently received lots of attention as a compleme...
One of the key factors to improve electrochemical properties is to find exceptional electrode materi...
A high-performance supercapacitor electrode is designed and fabricated with the 3D interconnected co...
Metal–organic framework-based supercapacitors have been widely recognized as the best energy storage...
To obtain a supercapacitor with a remarkable specific capacitance and rate performance, a cogent des...
Nickel–cobalt oxides/hydroxides have been considered as promising electrode materials for a high-per...
In situ growth of Ni–Co layered double hydroxides on graphene nanosheets by virtue of metal–organic ...
Recently, transition metal phosphates (TMPs) are demonstrated as promising candidates for supercapac...
Recently, transition metal phosphates (TMPs) are demonstrated as promising candidates for supercapac...
For this project, metal-rich cobalt phosphides (e.g., orthorhombic Co2P) are first explored as poten...
Recently, transition metal phosphates (TMPs) are demonstrated as promising candidates for supercapac...
Electrode materials for high-rate supercapacitors are greatly desired. Among actively studied electr...
Development of electrode materials with faster charge kinetics and high electrical conductivity are ...
Most reported pristine phosphates, such as NH4MPO4·H2O (M = Co, Ni), are not very stable as supercap...
It is extremely urgent to develop novel electrode materials with large capacity, high charge–dischar...
Energy storage system based on supercapacitors has recently received lots of attention as a compleme...
One of the key factors to improve electrochemical properties is to find exceptional electrode materi...
A high-performance supercapacitor electrode is designed and fabricated with the 3D interconnected co...
Metal–organic framework-based supercapacitors have been widely recognized as the best energy storage...
To obtain a supercapacitor with a remarkable specific capacitance and rate performance, a cogent des...
Nickel–cobalt oxides/hydroxides have been considered as promising electrode materials for a high-per...
In situ growth of Ni–Co layered double hydroxides on graphene nanosheets by virtue of metal–organic ...
Recently, transition metal phosphates (TMPs) are demonstrated as promising candidates for supercapac...
Recently, transition metal phosphates (TMPs) are demonstrated as promising candidates for supercapac...
For this project, metal-rich cobalt phosphides (e.g., orthorhombic Co2P) are first explored as poten...
Recently, transition metal phosphates (TMPs) are demonstrated as promising candidates for supercapac...