基于纳米纤维素的传感器,用于可生物降解、柔性、一次性和可穿戴电子产品

A. Naidonov
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引用次数: 0

摘要

问题。快速的技术进步导致消费电子产品的使用寿命缩短。引入绿色、柔性、可生物降解的电子设备将防止环境灾难。最近,使用有机材料代替无机类似物变得越来越流行,这使得有可能从需要处理的多种用途的刚性固态传感器转变为适合人类佩戴在身体或衣服上以及使用后在自然界中自发分解的柔性一次性传感器。纳米纤维素是一种很有前途的有机材料。研究的目的。研究纳米纤维素应用于制造各种物理和化学量的柔性、可穿戴、一次性传感器的可能性。实施方法。本文对各种合成技术、合成特点以及基于纳米纤维素的柔性传感器的主要特性进行了分析、分类和比较。此外,还将基于纳米纤维素的柔性传感器的主要参数与基于人工聚合物的传感器的相应类似物进行了比较。研究结果。本文建立了使用纳米纤维素制造各种物理和化学量的传感器的物理和技术特征,以提高其性能。已经证实,纳米纤维素既可以用作基底,也可以用作传感器的敏感元件。还表明,纳米纤维素适用于基于电物理现象和光学效应的传感器。结论。纳米纤维素是一种很有前途的可生物降解材料,在此基础上可以制造出柔性、一次性、可穿戴的传感器。这种传感器的制造技术应仅包含低温和干式加工工艺。为了在某些类型的传感器中有效使用,建议制造具有改性表面或与其他纳米材料形成复合材料的纳米纤维素。基于所获得的结果,有可能改进现有的和开发新的方法来制造不需要处理的柔性可穿戴一次性传感器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SENSORS BASED ON NANOCELLULOSE FOR BIODEGRADABLE, FLEXIBLE, DISPOSABLE AND WEARABLE ELECTRONICS
Problems. Rapid technical progress has led to a reduction in the useful life of consumer electronics. The introduction of green, flexible, biodegradable electronic devices will prevent an environmental catastrophe. Recently, the use of organic materials instead of inorganic analogues has become increasingly popular, which makes it possible to move from rigid solid-state sensors for multiple use that require disposal to flexible, disposable sensors that are suitable for human wear on the body or clothing and for spontaneous decomposition in nature after using. One of such promising organic materials is nanocellulose. The aim of the study. Studying the possibility of nanocellulose application for the manufacture of flexible, wearable, disposable sensors of various types of physical and chemical quantities. Methodology of implementation. In the article the analysis, classification and comparision of various technologies and features of synthesis, as well as the main characteristics of flexible sensors made on the basis of nanocellulose were fulfilled. Also the main parameters of flexible sensors based on nanocellulose were being compared with corresponding analogs of sensors based on artificial polymers. Research results. The paper established the physical and technological features of using nanocellulose for the manufacture of sensors of various types of physical and chemical quantities in order to improve their performance. It has been established that nanocellulose can be used both as a substrate and as a sensitive element of a sensor. It has also been shown that nanocellulose is suitable for use in sensors based on both electrical physical phenomena and optical effects. Conclusions. Nanocellulose is a promising biodegradable material on the basis of which flexible, disposable, wearable sensors can be created. The manufacturing technology of such sensors should contain only low-temperature and dry processing processes. For effective use in certain types of sensors, it is advisable to manufacture nanocellulose with a modified surface or in the form of composites with other nanomaterials. Based on the obtained results, it is possible to improve existing and develop new methods of creating flexible wearable disposable sensors that do not require disposal.
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