One-dimensional (1D) carbon nanostructures have been intensively investigated because of their intriguing features and great potential for practical application in various fields. This paper reports the controllable fabrication of carbon hollow nanobubbles on porous carbon nanofibers (CHNBs@PCNFs) through a general electrospinning strategy, with metal azides serving as both a bubbling and a porogen reagent. The strong repulsive forces resulting from the intense release of N 2 from the decomposition of metal azides upon carbonization leads to the uniform formation of porous carbon nanofibers (PCNFs), which could be facile tuned by heating rates and the amount of the bubbling reagent, simultaneously constructed with carbon hollow nanobubbles ...
Potassium–sulfur batteries (KSBs) are regarded as a promising large-scale energy storage technology,...
Room temperature sodium-sulfur batteries have been considered to be potential candidates for future ...
Room temperature sodium-sulfur batteries have been considered to be potential candidates for future ...
We report the use of passion fruit-like double-carbon-shell porous carbon microspheres (PCMs) as the...
Significant challenges for the commercialization of a lithium-sulfur battery include its rapid capac...
Despite the high theoretical capacity of the sodium-sulfur battery, its application is seriously res...
Low-cost Na-ion batteries (SIBs) are a promising alternative to Li-ion batteries (LIBs) for large-sc...
Carbonaceous materials are considered strong candidates as anode materials for sodium-ion batteries ...
Benefiting from the high theoretical specific capacity and low cost consumption, lithium-sulfur batt...
Metal organic framework (MOF)-derived nanoporous carbons (NPCs) have been proposed as promising elec...
Heteroatom-doped hollow carbon nanostructures are one of the most promising sulfur hosts for high-pe...
We report the use of passion fruit-like double-carbon-shell porous carbon microspheres (PCMs) as the...
This thesis aims to develop self-supported anode materials based on hard carbon and cobalt sulfides ...
© 2020 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Room-temperature sodium-sulfur (RT/Na-S) batteries...
The practical application of Li-S batteries is inherently limited by the low conductivity of sulfur ...
Potassium–sulfur batteries (KSBs) are regarded as a promising large-scale energy storage technology,...
Room temperature sodium-sulfur batteries have been considered to be potential candidates for future ...
Room temperature sodium-sulfur batteries have been considered to be potential candidates for future ...
We report the use of passion fruit-like double-carbon-shell porous carbon microspheres (PCMs) as the...
Significant challenges for the commercialization of a lithium-sulfur battery include its rapid capac...
Despite the high theoretical capacity of the sodium-sulfur battery, its application is seriously res...
Low-cost Na-ion batteries (SIBs) are a promising alternative to Li-ion batteries (LIBs) for large-sc...
Carbonaceous materials are considered strong candidates as anode materials for sodium-ion batteries ...
Benefiting from the high theoretical specific capacity and low cost consumption, lithium-sulfur batt...
Metal organic framework (MOF)-derived nanoporous carbons (NPCs) have been proposed as promising elec...
Heteroatom-doped hollow carbon nanostructures are one of the most promising sulfur hosts for high-pe...
We report the use of passion fruit-like double-carbon-shell porous carbon microspheres (PCMs) as the...
This thesis aims to develop self-supported anode materials based on hard carbon and cobalt sulfides ...
© 2020 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Room-temperature sodium-sulfur (RT/Na-S) batteries...
The practical application of Li-S batteries is inherently limited by the low conductivity of sulfur ...
Potassium–sulfur batteries (KSBs) are regarded as a promising large-scale energy storage technology,...
Room temperature sodium-sulfur batteries have been considered to be potential candidates for future ...
Room temperature sodium-sulfur batteries have been considered to be potential candidates for future ...