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A Fully Transparent Flexible Sensor for Cryogenic Temperatures Based on High Strength Metallurgical Graphene

机译:基于高强度冶金石墨烯的低温透明全透明柔性传感器

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摘要

Low-temperature electronics operating in below zero temperatures or even below the lower limit of the common −65 to 125 °C temperature range are essential in medical diagnostics, in space exploration and aviation, in processing and storage of food and mainly in scientific research, like superconducting materials engineering and their applications—superconducting magnets, superconducting energy storage, and magnetic levitation systems. Such electronic devices demand special approach to the materials used in passive elements and sensors. The main goal of this work was the implementation of a fully transparent, flexible cryogenic temperature sensor with graphene structures as sensing element. Electrodes were made of transparent ITO (Indium Tin Oxide) or ITO/Ag/ITO conductive layers by laser ablation and finally encapsulated in a polymer coating. A helium closed-cycle cryostat has been used in measurements of the electrical properties of these graphene-based temperature sensors under cryogenic conditions. The sensors were repeatedly cooled from room temperature to cryogenic temperature. Graphene structures were characterized using Raman spectroscopy. The observation of the resistance changes as a function of temperature indicates the potential use of graphene layers in the construction of temperature sensors. The temperature characteristics of the analyzed graphene sensors exhibit no clear anomalies or strong non-linearity in the entire studied temperature range (as compared to the typical carbon sensor).
机译:在医疗诊断,太空探索和航空,食品加工和存储以及主要在科学研究中,在低于零温度或什至低于-65至125°C共同温度范围下限的低温电子设备是必不可少的,例如超导材料工程及其应用-超导磁体,超导储能和磁悬浮系统。这样的电子设备需要特殊方法来处理无源元件和传感器中使用的材料。这项工作的主要目标是实现以石墨烯结构作为传感元件的全透明,柔性低温温度传感器。电极由透明ITO(氧化铟锡)或ITO / Ag / ITO导电层通过激光烧蚀制成,最后封装在聚合物涂层中。氦气闭环低温恒温器已用于在低温条件下测量这些基于石墨烯的温度传感器的电性能。将传感器从室温反复冷却至低温。使用拉曼光谱法表征石墨烯结构。电阻随温度变化的观察表明,石墨烯层在温度传感器结构中的潜在用途。在整个研究的温度范围内(与典型的碳传感器相比),所分析的石墨烯传感器的温度特性没有表现出明显的异常或强烈的非线性。

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