Advancements in polymer nanoconfinement: tailoring material properties for advanced technological applications

Alberto Alvarez-Fernandez and Jon Maiz
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Abstract

The precise encapsulation of polymer chains within nanometer-scale spaces or structures has sparked a dynamic research field with vast potential for technological applications. Through confinement, properties such as morphology, thermal stability, and mechanical strength can be finely tuned, offering opportunities for advanced materials and biomedical devices. Various confinement methods, including nanoparticle encapsulation, planar thin films, and cylindrical confinement, induce unique alterations in polymer behaviour, affecting their optical, electronic, and thermal properties. The remarkable expansion in the applications of confined polymers across numerous research fields underscores the need for critical discussions on future potential. Therefore, this perspective article aims to identify key challenges and opportunities in this interdisciplinary research community, with a special focus on their practical applications.

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聚合物纳米强化技术的进展:为先进技术应用定制材料特性
将聚合物链精确封装在纳米尺度的空间或结构中,引发了一个充满活力的研究领域,其技术应用潜力巨大。通过限制,可以对形态、热稳定性和机械强度等特性进行微调,为先进材料和生物医学设备提供了机遇。各种约束方法,包括纳米粒子封装、平面薄膜和圆柱约束,都会引起聚合物行为的独特变化,影响其光学、电子和热学特性。密闭聚合物在众多研究领域的应用明显扩大,这凸显了对其未来潜力进行深入探讨的必要性。因此,本视角文章旨在确定这一跨学科研究领域的关键挑战和机遇,并特别关注其实际应用。
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Back cover Impact of aromatic to quinoidal transformation on the degradation kinetics of imine-based semiconducting polymers† Adhesive-less bonding of incompatible thermosetting materials† Polymer-based solid electrolyte interphase for stable lithium metal anodes† An injectable, self-healing, polysaccharide-based antioxidative hydrogel for wound healing†
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