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Structural Parameters of Functional Membranes for Integration in Smart Wearable Materials

机译:智能可穿戴材料中集成功能膜的结构参数

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摘要

Smart clothes can be described as textiles that change their behavior under some external factors (stimulants). The response of the smart cloth can be passive (just as a sensor) or active (where a combination of sensing and another reaction takes place). The materials involved in these textiles are crucial for many applications, especially for health related applications where the "wearables" can provide instantaneous monitoring and aid to people with certain disabilities. This work consists of two main parts: First it investigates the different materials used in smart clothing for monitoring the vital activities of the human body (e.g. the breathing rates) with an emphasis on piezoresistive structures as they work sensing elements for mechanical strains. Second this work presents the production of functional membrane samples based on synthesized pyrrolinone ester hydrazone dye with a preliminary investigation of their chemical and geometrical parameters, especially their sensitivity for monitoring the presence of ammonia to function as a smart textile based colorimetric chemosensor.
机译:可以将智能服装描述为在某些外部因素(刺激剂)下会改变其行为的纺织品。智能布的响应可以是被动的(仅作为传感器),也可以是主动的(在其中发生感应和另一种反应的组合)。这些纺织品中涉及的材料对于许多应用至关重要,特别是对于与健康相关的应用,其中“可穿戴设备”可以为特定的残疾人提供即时监控和帮助。这项工作包括两个主要部分:首先,它研究了用于监控人体重要活动(例如呼吸频率)的智能服装中使用的不同材料,并重点研究了压阻结构,因为它们起着机械应变传感元件的作用。其次,这项工作介绍了基于合成的吡咯烷酮酯染料的功能性膜样品的生产,并对它们的化学和几何参数进行了初步研究,尤其是对于监测氨的存在以用作基于纺织品的智能比色化学传感器的敏感性。

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