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探究环流动性对双股滑环凝胶网络宏观性质的影响。

Exploring the Impact of Ring Mobility on the Macroscopic Properties of Doubly Threaded Slide-Ring Gel Networks.

作者信息

Oh Jongwon, Liu Guancen, Kim Hojin, Hertzog Jerald E, Nitta Natsumi, Rowan Stuart J

机构信息

Pritzker School of Molecular Engineering, University of Chicago, IL 60637, Chicago, USA.

Department of Chemistry, University of Chicago, IL 60637, Chicago, USA.

出版信息

Angew Chem Int Ed Engl. 2024 Oct 21;63(43):e202411172. doi: 10.1002/anie.202411172. Epub 2024 Sep 10.

Abstract

The integration of mechanically interlocked molecules (MIMs) into polymeric materials has led to the development of mechanically interlocked polymers (MIPs). One class of MIPs that have gained attention in recent years are slide-ring gels (SRGs), which are generally accessed by crosslinking rings on a main-chain polyrotaxane. The mobility of the interlocked crosslinking moieties along the polymer backbone imparts enhanced properties onto these networks. An alternative synthetic approach to SRGs is to use a doubly threaded ring as the crosslinking moiety, yielding doubly threaded slide-ring gel networks (dt-SRGs). In this study, a photo-curable ligand-containing thread was used to assemble a series of metal-templated pseudo[3]rotaxane crosslinkers that allow access to polymer networks that contain doubly threaded interlocked rings. The physicochemical and mechanical properties of these dt-SRGs with varying size of the ring crosslinking moieties were investigated and compared to an entangled gel (EG) prepared by polymerizing the metal complex of the photo-curable ligand-containing thread, and a corresponding covalent gel (CG). Relative to the EG and CG, the dt-SRGs exhibit enhanced swelling behavior, viscoelastic properties, and stress relaxation characteristics. In addition, the macroscopic properties of dt-SRGs could be altered by "locking" ring mobility in the structure through remetalation, highlighting the impact of the mobility of the crosslinks.

摘要

将机械互锁分子(MIMs)整合到聚合物材料中,促成了机械互锁聚合物(MIPs)的发展。近年来受到关注的一类MIPs是滑环凝胶(SRGs),通常通过在主链聚轮烷上交联环来制备。互锁的交联部分沿聚合物主链的移动性赋予这些网络增强的性能。制备SRGs的另一种合成方法是使用双股环作为交联部分,得到双股滑环凝胶网络(dt-SRGs)。在本研究中,使用含光固化配体的线组装了一系列金属模板化的假[3]轮烷交联剂,从而能够制备含有双股互锁环的聚合物网络。研究了这些环交联部分尺寸不同的dt-SRGs的物理化学和力学性能,并与通过聚合含光固化配体的线的金属配合物制备的缠结凝胶(EG)和相应的共价凝胶(CG)进行了比较。相对于EG和CG,dt-SRGs表现出增强的溶胀行为、粘弹性和应力松弛特性。此外,通过再金属化“锁定”结构中环的移动性,可以改变dt-SRGs的宏观性能,突出了交联移动性的影响。

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