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Topological Confinement in Reversibly Interlocked Polymer Networks 被引量:2
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作者 Wan-Ting Dai Zhen-Hua Xie +3 位作者 Yu-Bin Ke Yang You Min-Zhi Rong Ming-Qiu Zhang 《Chinese Journal of Polymer Science》 SCIE EI CAS CSCD 2024年第2期133-140,I0004,共9页
Recently, we reported a series of reversibly interlocked polymer networks(RILNs), whose mechanical robustness and functionalities improvement was believed to be derived from topological interlocking of two sub-network... Recently, we reported a series of reversibly interlocked polymer networks(RILNs), whose mechanical robustness and functionalities improvement was believed to be derived from topological interlocking of two sub-networks, although the direct evidence for the deduction is still lacking. Herein, a specially-designed RILNs system, in which the inter-component hydrogen bonds can be shielded as needed, was prepared and used to study the micro-structures of RILNs, aiming to verify the existence of mechanical interlocking in RILNs. By changing the pH of the swelling solvent, the effect exerted by the inter-component non-covalent bonds was eliminated, so detailed information of the networks structure was exposed. The small angle X-ray scattering(SAXS) and small-angle neutron scattering(SANS) results indicated that swelling-induced structural evolution of the two sub-networks mutually affected each other, even when the inter-component hydrogen bonds were absent, proving the presence of topological interlocking. The findings may help to draw a more accurate physical image and reveal the detailed structureproperty relationship of RILNs. 展开更多
关键词 Reversibly interlocked polymer networks Small angle X-ray scattering Small-angle neutron scattering Topological confinement
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