Cellulose based smart sensors

Ekta Jagtiani
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引用次数: 2

Abstract

Cellulose fibres, cellulose nanofibers, cellulose nanocrystals and cellulose derivatives are all examples of cellulose-based materialsthat display superior characteristics with a number of desirable properties, including biodegradability, sustainability, biocompatibility, thermal properties , optical transparency, flexibility, high mechanical strength, high porosity,hydrophilicity, a large surface area and broad chemical modification capabilities. "Smart" materials based on cellulose created by the chemical changes and physical incorporation/blending techniques offer numerous advantages, most notably their intelligent responses to environmental stimuli. Conductive networks are formed in cellulose-based composite materials by combining or coating conductive materials with the cellulose components or by directly carbonising the cellulose materials. Numerous nanopaper-based optical sensing platforms are explained and how they can be tailored to exhibit plasmonic or photoluminescent features suitable for sensing applications using nanomaterials or as biomaterials. The responsiveness of these "smart" materials to pH, temperature, light, electricity, magnetic fields and mechanical forces, among other parameters, is also reviewed, as were their applications as drug delivery systems, hydrogels, electronic active papers, sensors, shape memory materials, smart membranes, etc.
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纤维素智能传感器
纤维素纤维、纤维素纳米纤维、纤维素纳米晶体和纤维素衍生物都是纤维素基材料的例子,它们具有许多理想的特性,包括可生物降解性、可持续性、生物相容性、热性能、光学透明度、柔韧性、高机械强度、高孔隙率、亲水性、大表面积和广泛的化学改性能力。基于纤维素的“智能”材料通过化学变化和物理掺入/混合技术产生,具有许多优点,最显著的是它们对环境刺激的智能反应。通过将导电材料与纤维素组分结合或涂覆或直接碳化纤维素材料,在纤维素基复合材料中形成导电网络。解释了许多基于纳米纸的光学传感平台,以及如何定制它们以显示适合使用纳米材料或生物材料的传感应用的等离子体或光致发光特性。本文还回顾了这些“智能”材料对pH值、温度、光、电、磁场和机械力等参数的响应性,以及它们在药物输送系统、水凝胶、电子活性纸、传感器、形状记忆材料、智能膜等方面的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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