...
首页> 外文期刊>Materials Chemistry Frontiers >Emerging cellulose-derived materials: a promising platform for the design of flexible wearable sensors toward health and environment monitoring
【24h】

Emerging cellulose-derived materials: a promising platform for the design of flexible wearable sensors toward health and environment monitoring

机译:新兴cellulose-derived材料:一个有前途的平台的设计灵活的可穿戴传感器对健康和环境监测

获取原文
获取原文并翻译 | 示例
           

摘要

The ongoing surge in demand for high-performance wearable sensors for precisely monitoring vital signs of the human body or the surrounding environment has inspired the relentless pursuit of biocompatible and biodegradable advanced materials. Cellulose, as a class of well-known natural biopolymer on the Earth, presents distinctive integrated merits of good biocompatibility and biodegradability, easy processability into diverse material formats, and sustainable production on a large scale, as well as intrinsic shape anisotropy, surface charge/chemistry, and superior physical and mechanical properties. Such unique advantages have driven constant innovations in wearable and smart cellulose-containing sensors in the past few years. With the rapid development of fabrication techniques in material processing and progress in research, cellulose has been engineered into multidimensional architectures including 1D (nanofibers, fibers, and yarns), 2D (paper, films, and fabrics), and 3D (hydrogels, aerogels, foams, and sponges), which are further transformed into electrically conductive carbonaceous materials with tailorable structures and properties. Cellulose-derived materials have been developed as flexible biosupports or biosubstrates, sensing layers, electrodes and active components for wearable sensors by virtue of their favorable and unique material merits. In this review, the recent advances in the development of multidimensional and multifunctional cellulose-derived materials are discussed for wearable sensors toward healthcare and environment monitoring. First of all, the unique hierarchical and chemical structures and properties of cellulose are briefly introduced. Then, we summarize the fabrication strategies for processing cellulose into materials with multidimensional architectures. Additionally, the design and functionality of flexible wearable sensors developed with multidimensional cellulose-derived materials as biosubstrates, electrodes, active layers, and sensing components are presented in detail. In particular, cellulose-based advanced materials for self-powered sensors are also highlighted. Finally, some prospects on the future challenges in this emerging research field of designing cellulose-derived materials for wearable sensors are illustrated. This review may provide insightful inspiration for the design and utilization of cellulosic composites in flexible electronic devices with high-performance.
机译:高性能的持续增长的需求可穿戴传感器精确监控至关重要人体或周围的迹象环境激发了不懈的追求生物相容性和生物可降解的先进材料。自然地球上的生物高聚物,礼物独特的综合优点的好生物相容性和生物降解性,容易加工性能为不同材料格式大规模可持续生产内在的形状各向异性,表面电荷/化学,物理和优越机械性能。不断创新可穿戴和驱动吗过去聪明很多纤维素含量丰富的传感器几年。在材料加工和制造技术进展研究,纤维素改造成多维架构包括1 d(纳米纤维、纤维和纱线),2 d(纸张、电影和面料),3 d(水凝胶,气凝胶、泡沫和海绵),进一步转化为导电碳质材料可裁制成衣的结构和属性。开发灵活biosupports或biosubstrates,传感层、电极和活性成分可穿戴传感器的美德有利的优点和独特的材料。这次审查的最新进展多维的发展和多功能cellulose-derived材料讨论了可穿戴传感器向医疗保健和环境监测。独特的层次结构和化学结构和简要介绍了纤维素的性质。然后,我们总结了制造策略处理纤维素材料多维架构。灵活的可穿戴的设计和功能传感器与多维发展biosubstrates cellulose-derived材料,电极,活跃层,和传感组件详细介绍了。纤维素基先进材料自供电的传感器也会高亮显示。最后,一些前景在未来的挑战在设计这一新兴研究领域cellulose-derived材料可穿戴传感器进行了说明。设计和洞察力的灵感来源利用纤维素复合材料的灵活电子设备和高性能。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号