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Aggregation behaviour of pyrene-based luminescent materials, from molecular design and optical properties to application
Molecular aggregates are self-assembled from multiple molecules via weak intermolecular
interactions, and new chemical and physical properties can emerge compared to their …
interactions, and new chemical and physical properties can emerge compared to their …
Rechargeable metal-sulfur batteries: key materials to mechanisms
Rechargeable metal-sulfur batteries are considered promising candidates for energy
storage due to their high energy density along with high natural abundance and low cost of …
storage due to their high energy density along with high natural abundance and low cost of …
Metal-coordinated covalent organic frameworks as advanced bifunctional hosts for both sulfur cathodes and lithium anodes in lithium–sulfur batteries
The shuttling of polysulfides on the cathode and the uncontrollable growth of lithium
dendrites on the anode have restricted the practical application of lithium–sulfur (Li–S) …
dendrites on the anode have restricted the practical application of lithium–sulfur (Li–S) …
Covalent organic framework based lithium–sulfur batteries: materials, interfaces, and solid‐state electrolytes
Lithium–sulfur batteries are recognized as one of the most promising next‐generation
energy‐storage technologies owing to their high energy density and low cost. Nevertheless …
energy‐storage technologies owing to their high energy density and low cost. Nevertheless …
Post-synthetic modification of covalent organic frameworks for CO2 electroreduction
To achieve high-efficiency catalysts for CO2 reduction reaction, various catalytic metal
centres and linker molecules have been assembled into covalent organic frameworks. The …
centres and linker molecules have been assembled into covalent organic frameworks. The …
Recent advances in covalent organic framework electrode materials for alkali metal-ion batteries
Owing to the shortcomings of traditional electrode materials in alkali metal-ion batteries
(AIBs), such as limited reversible specific capacity, low power density, and poor cycling …
(AIBs), such as limited reversible specific capacity, low power density, and poor cycling …
Covalent organic frameworks for CO 2 capture: from laboratory curiosity to industry implementation
CO2 concentration in the atmosphere has increased by about 40% since the 1960s. Among
various technologies available for carbon capture, adsorption and membrane processes …
various technologies available for carbon capture, adsorption and membrane processes …
Recent progress on phase engineering of nanomaterials
As a key structural parameter, phase depicts the arrangement of atoms in materials.
Normally, a nanomaterial exists in its thermodynamically stable crystal phase. With the …
Normally, a nanomaterial exists in its thermodynamically stable crystal phase. With the …
Covalent organic frameworks: their composites and derivatives for rechargeable metal-ion batteries
Covalent organic frameworks (COFs) have attracted considerable interest in the field of
rechargeable batteries owing to their three-dimensional (3D) varied pore sizes, inerratic …
rechargeable batteries owing to their three-dimensional (3D) varied pore sizes, inerratic …
Construction of covalent organic frameworks via multicomponent reactions
Multicomponent reactions (MCRs) combine at least three reactants to afford the desired
product in a highly atom-economic way and are therefore viewed as efficient one-pot …
product in a highly atom-economic way and are therefore viewed as efficient one-pot …