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Responsive Mesoporous Photonic Cellulose Films by Supramolecular Cotemplating

机译:超分子共反应响应性介孔光子纤维素膜

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摘要

Cellulose-based materials have been and continue to be exceptionally important for humankind. Considering the bioavailability and societal relevance of cellulose, turning this renewable resource into an active material is a vital step towards sustainability. Herein we report a new form of cellulose-derived material that combines tunable photonic properties with a unique mesoporous structure resulting from a new supramolecular cotemplating method. A composite of cellulose nanocrystals and a urea-formaldehyde resin organizes into a chiral nematic assembly, which yields a chiral nematic mesoporous continuum of desulfated cellulose nanocrystals after alkaline treatment. The mesoporous photonic cellulose (MPC) films undergo rapid and reversible changes in color upon swelling, and can be used for pressure sensing. These new active mesoporous cellulosic materials have potential applications in biosensing, optics, functional membranes, chiral separation, and tissue engineering.
机译:基于纤维素的材料已经并且继续对人类异常重要。考虑到纤维素的生物利用度和社会相关性,将这种可再生资源转化为活性物质是迈向可持续性的关键一步。在本文中,我们报告了一种新形式的纤维素衍生材料,该材料将可调谐的光子特性与由新的超分子共模方法产生的独特的介孔结构结合在一起。纤维素纳米晶体和脲醛树脂的复合物组成手性向列型组件,在碱处理后产生脱硫纤维素纳米晶体的手性向列型介孔连续体。介孔光子纤维素(MPC)膜在溶胀时会发生颜色的快速和可逆变化,可用于压力传感。这些新型的活性介孔纤维素材料在生物传感,光学,功能膜,手性分离和组织工程中具有潜在的应用。

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