Zhang Hang, Diesendruck Charles E
Schulich Faculty of Chemistry and Resnick Sustainability Center for Catalysis, Technion - Israel Institute of Technology, Haifa, 3200008, Israel.
Chemistry. 2024 Oct 11;30(57):e202402632. doi: 10.1002/chem.202402632. Epub 2024 Sep 24.
Covalent polymer chains are known to undergo mechanochemical events when subjected to mechanical forces. Such force-coupled reactions, like C-C bond scission in homopolymers, typically occur in a non-selective manner but with a higher probability at the mid-chain. In contrast, block copolymers (BCPs), composed of two or more chemically distinct chains linked by covalent bonds, have recently been shown to exhibit significantly different mechanochemical reactivities and selectivities. These differences may be attributable to the atypical conformations adopted by their chains, compared to the regular random coil. Beyond individual molecules, when BCPs self-assemble into ordered aggregates in solution, the non-covalent interactions between the chains lead to meaningful acceleration in the activation of embedded force-sensitive motifs. Furthermore, the microphase segregation of BCPs in bulk creates periodically dispersed polydomains, locking the blocks in specific conformations which have also been shown to affect their mechanochemical reactivity, with different morphologies influencing reactivity to varying extents. This review summarizes the studies of mechanochemistry in BCPs over the past two decades, from the molecular level to assemblies, and up to bulk materials.
已知共价聚合物链在受到机械力作用时会发生机械化学事件。这种力耦合反应,如同均聚物中的碳 - 碳键断裂,通常以非选择性方式发生,但在链的中部发生的概率更高。相比之下,由两个或更多通过共价键连接的化学性质不同的链组成的嵌段共聚物(BCP),最近已被证明表现出显著不同的机械化学反应性和选择性。与规则的无规线团相比,这些差异可能归因于其链所采用的非典型构象。除了单个分子外,当BCP在溶液中自组装成有序聚集体时,链之间的非共价相互作用会导致嵌入的力敏基序的活化有显著加速。此外,BCP在本体中的微相分离会产生周期性分散的多畴,将嵌段锁定在特定构象中,这也已被证明会影响它们的机械化学反应性,不同的形态对反应性的影响程度不同。本综述总结了过去二十年中对BCP机械化学的研究,从分子水平到组装体,再到本体材料。