Covalent organic frameworks based on Schiff-base chemistry: synthesis, properties and potential applications
Ковалентные органические каркасы на основе химии оснований Шиффа: синтез, свойства и потенциальные применения
2016-01-01
SCID: 54.1/8tqvuvwb
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COF applicationsCovalent organic frameworksDynamic imine chemistryPorous crystalline materialsSchiff-base chemistry
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Abstract (AI)
Covalent organic-frameworks (COFs) are an emerging class of porous and ordered materials formed by condensation reactions of organic molecules. Recently, the Schiff-base chemistry or dynamic imine-chemistry has been widely explored for the synthesis of COFs. The main reason for this new tendency is based on their high chemical stability, porosity and crystallinity in comparison to previously reported COFs. This critical review article summarizes the current state-of-the-art on the design principles and synthetic strategies toward COFs based on Schiff-base chemistry, collects and rationalizes their physicochemical properties, as well as aims to provide perspectives of potential applications which are at the forefront of research in materials science.
Key Findings
1
It compiles and rationalizes the physicochemical properties of Schiff-base COFs and discusses their potential applications in materials science.
2
Schiff-base COFs generally exhibit high chemical stability, porosity, and crystallinity compared with previously reported COFs.
3
Schiff-base, or dynamic imine, chemistry has become a widely explored route for synthesizing covalent organic frameworks (COFs).
4
The article identifies emerging application opportunities and research perspectives for Schiff-base-based COFs.
5
The review organizes design principles and synthetic strategies for constructing COFs through Schiff-base chemistry.
Research Object
Covalent organic frameworks based on Schiff-base (dynamic imine) chemistry
Research Subject
Their design principles, synthetic strategies, physicochemical properties, and potential applications
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2016-01-01
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