The mechanochemical synthesis of polymers

Механохимический синтез полимеров
Jeung Gon Kim, Lars Borchardt, Annika Krusenbaum, Sven Grätz, Getinet Tamiru Tigineh
2022-01-01

green chemistrylinear polymersmechanochemical synthesismechanochemistrypolymer synthesisporous polymerspost-polymerisation modificationsreduced solvent consumption
Mechanochemistry - the utilization of mechanical forces to induce chemical reactions - is a rarely considered tool for polymer synthesis. It offers numerous advantages such as reduced solvent consumption, accessibility of novel structures, and the avoidance of problems posed by low monomer solubility and fast precipitation. Consequently, the development of new high-performance materials based on mechanochemically synthesised polymers has drawn much interest, particularly from the perspective of green chemistry. This review covers the constructive mechanochemical synthesis of polymers, starting from early examples and progressing to the current state of the art while emphasising linear and porous polymers as well as post-polymerisation modifications.
1
Development of high-performance materials from mechanochemically synthesized polymers is of significant interest for green chemistry.
2
Mechanochemical methods enable access to novel polymer structures that may be inaccessible by solution-based approaches.
3
Mechanochemical polymer synthesis offers reduced solvent consumption compared to traditional methods.
4
Mechanochemistry can be applied as a tool for polymer synthesis, despite being rarely considered for this purpose.
5
Mechanochemistry helps avoid issues arising from low monomer solubility and fast precipitation during polymerization.
6
Recent advances include constructive mechanochemical synthesis of linear and porous polymers and methods for post-polymerisation modifications.

Mechanochemically synthesized polymers

Constructive mechanochemical synthesis methods and resulting polymer types, focusing on linear and porous polymers and post-polymerisation modifications, including benefits such as reduced solvent use and access to novel structures

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Publication Date
2022-01-01
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Authors
Jeung Gon Kim
Lars Borchardt
Annika Krusenbaum
Sven Grätz
Getinet Tamiru Tigineh
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