The pursuit of facile synthetic methods for systematic control over the morphology and crystal phase of nanostructures has attracted a tremendous amount of interest. By utilizing the acid-induced layer-to-tunnel transition method of MnO2, we here for the first time report multi-layered sawtooth-shape MnO2 with relatively high mass loading. The optimized electrode exhibits durable activity with enhanced surface area, electrical conductivity and ionic diffusion. A high areal capacitance of 1781.8 mF/cm(2) is obtained and excellent rate performance can be corroborated from capacitance retention of 64.1% when the current density is increased by 45-fold. Our uniquely assembled heterostructure endows a large number of active sites and acts as ele...
In this paper, δ-MnO2 with layered structure was prepared by a facile liquid phase method, and exfol...
This work reports the rational design of MnOx nanorods on 3D crushed reduced graphene oxide (MnOx/C-...
Designable control over the morphology and structure of active materials is highly desirable for ach...
The pursuit of facile synthetic methods for systematic control over the morphology and crystal phase...
Manganese oxides are promising pseudocapacitve materials for achieving both high power and energy de...
In this work, an insightful study on the fundamental capacitive behavior of MnO2 based electrodes is...
The invention of SC fills the performance gap between the conventional capacitors and batteries in t...
Mesoporous manganese oxides (MnO2) were synthesized via a facile chemical deposition strategy. Three...
Hetero atom doped-MnO2 is considered as the promising supercapacitor electrode material due to its h...
International audienceA simple, binder-free fabrication of high capacitance electrodes based on mang...
Flower shaped birnessite type manganese oxide (δ-MnO2) nanostructures are synthesized using a simple...
MnO2 is currently under extensive investigations for its capacitance properties. MnO2 crystallizes i...
Manganese dioxide (MnO2) particles 2-3 nm in size were deposited onto a porous "activated micro...
Designable control over the morphology and structure of active materials is highly desirable for ach...
Manganese oxide (MnO2) has been comprehensively studied as one high-voltage electrode material in th...
In this paper, δ-MnO2 with layered structure was prepared by a facile liquid phase method, and exfol...
This work reports the rational design of MnOx nanorods on 3D crushed reduced graphene oxide (MnOx/C-...
Designable control over the morphology and structure of active materials is highly desirable for ach...
The pursuit of facile synthetic methods for systematic control over the morphology and crystal phase...
Manganese oxides are promising pseudocapacitve materials for achieving both high power and energy de...
In this work, an insightful study on the fundamental capacitive behavior of MnO2 based electrodes is...
The invention of SC fills the performance gap between the conventional capacitors and batteries in t...
Mesoporous manganese oxides (MnO2) were synthesized via a facile chemical deposition strategy. Three...
Hetero atom doped-MnO2 is considered as the promising supercapacitor electrode material due to its h...
International audienceA simple, binder-free fabrication of high capacitance electrodes based on mang...
Flower shaped birnessite type manganese oxide (δ-MnO2) nanostructures are synthesized using a simple...
MnO2 is currently under extensive investigations for its capacitance properties. MnO2 crystallizes i...
Manganese dioxide (MnO2) particles 2-3 nm in size were deposited onto a porous "activated micro...
Designable control over the morphology and structure of active materials is highly desirable for ach...
Manganese oxide (MnO2) has been comprehensively studied as one high-voltage electrode material in th...
In this paper, δ-MnO2 with layered structure was prepared by a facile liquid phase method, and exfol...
This work reports the rational design of MnOx nanorods on 3D crushed reduced graphene oxide (MnOx/C-...
Designable control over the morphology and structure of active materials is highly desirable for ach...