Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Metal Sulfide Hollow Nanostructures for Electrochemical Energy Storage

View through CrossRef
Metal sulfide hollow nanostructures (MSHNs) have received intensive attention as electrode materials for electrical energy storage (EES) systems due to their unique structural features and rich chemistry. Here, we summarize recent research progress in the rational design and synthesis of various metal sulfide hollow micro‐/nanostructures with controlled shape, composition and structural complexity, and their applications to lithium ion batteries (LIBs) and hybrid supercapacitors (HSCs). The current understanding of hollow structure control, including single‐shelled, yolk‐shelled, multi‐shelled MSHNs, and their hybrid micro‐/nanostructures with carbon (amorphous carbon nanocoating, graphene and hollow carbon), is focused on. The importance of proper structural and compositional control on the enhanced electrochemical properties of MSHNs is emphasized. A relationship between structural and compositional engineering with improved electrochemical activity of MSHNs is sought, in order to shed some light on future electrode design trends for next‐generation EES technologies.
Title: Metal Sulfide Hollow Nanostructures for Electrochemical Energy Storage
Description:
Metal sulfide hollow nanostructures (MSHNs) have received intensive attention as electrode materials for electrical energy storage (EES) systems due to their unique structural features and rich chemistry.
Here, we summarize recent research progress in the rational design and synthesis of various metal sulfide hollow micro‐/nanostructures with controlled shape, composition and structural complexity, and their applications to lithium ion batteries (LIBs) and hybrid supercapacitors (HSCs).
The current understanding of hollow structure control, including single‐shelled, yolk‐shelled, multi‐shelled MSHNs, and their hybrid micro‐/nanostructures with carbon (amorphous carbon nanocoating, graphene and hollow carbon), is focused on.
The importance of proper structural and compositional control on the enhanced electrochemical properties of MSHNs is emphasized.
A relationship between structural and compositional engineering with improved electrochemical activity of MSHNs is sought, in order to shed some light on future electrode design trends for next‐generation EES technologies.

Related Results

Contrasting Geochemistry of Apatite from Peridotites and Sulfide Ores of the Jinchuan Ni-Cu Sulfide Deposit, NW China
Contrasting Geochemistry of Apatite from Peridotites and Sulfide Ores of the Jinchuan Ni-Cu Sulfide Deposit, NW China
Abstract Apatite is present within both the hosting lherzolite and sulfide ore at the Jinchuan magmatic Ni-Cu sulfide deposit of northwest China. Apatite grains with...
Switching control strategy for an energy storage system based on multi-level logic judgment
Switching control strategy for an energy storage system based on multi-level logic judgment
Energy storage is a new, flexibly adjusting resource with prospects for broad application in power systems with high proportions of renewable energy integration. However, energy st...
Study of High-sulfur Natural Gas Field Water Treatment
Study of High-sulfur Natural Gas Field Water Treatment
Abstract High-sulfide gas field water with more than 100mg/L hydrogen sulfide account for 54.5% of gas wells in the Southern and Eastern gas fields of Sichuan, Ch...
Sulfate/sulfide removal from wastewater by lab-scale microbial fuel cell
Sulfate/sulfide removal from wastewater by lab-scale microbial fuel cell
Sulfate/sulfide-containing wastewater is a widespread environmental contaminant resulting from human activities. These pollutants have negative impact on natural ecosystems and hum...
Safe Boundaries of High-Temperature Fracturing Fluids
Safe Boundaries of High-Temperature Fracturing Fluids
Abstract In successful hydraulic fracturing operations, fracturing fluids should possess sufficient viscosity in order to transmit high pumping pressure downhole. Th...
The Energy Storage Technologies in Generation-Integrated Systems (GIES) and Non-GIES
The Energy Storage Technologies in Generation-Integrated Systems (GIES) and Non-GIES
Energy storage technologies can be categorized into generation-integrated systems (GIES) and non-GIES. The effectiveness of an increasing number of non-dispatchable sources of elec...

Back to Top