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"Covalent Organic Frameworks: Their Composites and Derivatives for Rech" by Bowen Sun, Zixu Sun et al.

Covalent organic frameworks (COFs) have attracted considerable interest in the field of rechargeable batteries owing to their three-dimensional (3D) varied pore sizes, inerratic porous structures, abundant redox-active sites, and customizable structure-adjustable frameworks. In the context of metal-ion batteries, these materials play a vital role in electrode materials, effectively addressing critical issues such as low ionic conductivity, limited specific capacity, and unstable structural integrity. However, the electrochemical characteristics of the developed COFs still fall short of practical battery requirements due to inherent issues such as low electronic conductivity, the tradeoff between capacity and redox potential, and unfavorable micromorphology. This review provides a comprehensive overview of the recent advancements in the application of COFs, COF-based composites, and their derivatives in rechargeable metal-ion batteries, including lithium-ion, lithium-sulfur, sodium-ion, ....

Cof Based Composites , Covalent Organic Frameworks , Ionic Conductivity , Metal Ion Batteries , Edox Active Sites , Specific Capacity , Tructure Adjustable Frameworks ,

Improving the Specific Capacity of NVP

Scientists have succeeded in enhancing the specific capacity of Na3V2(PO4)3 (NVP), a novel electrode material, according to a recent study published in Advanced Science. ....

Hongyang Ma , Bangchuan Zhao , Megan Craig , Specific Capacity , Chinese Academy , Science Hefei Institutes , Physical Science , Materials Industry Focus , Crystallinity Tuning , Unlocking Sodium Storage Capacity , Inducing Pseudocapacitance ,