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气流辅助介电泳以降低基于碳纳米管的温度传感器中的电阻失配

Airflow-assisted dielectrophoresis to reduce the resistance mismatch in carbon nanotube-based temperature sensors.

作者信息

Abdulhameed Abdullah, Halin Izhal Abdul, Mohtar Mohd Nazim, Hamidon Mohd Nizar

机构信息

Department of Electronic Engineering, Faculty of Engineering, Hadhramout University Mukalla Yemen

Department of Electrical and Electronic Engineering, Faculty of Engineering, Universiti Putra Malaysia Serdang 43400 Malaysia.

出版信息

RSC Adv. 2021 Dec 10;11(62):39311-39318. doi: 10.1039/d1ra08250g. eCollection 2021 Dec 6.

Abstract

The dielectrophoresis (DEP) method is used to fabricate sensor devices by assembling and aligning carbon nanotubes (CNTs) across electrode structures. The challenges of the method increase as the gap width between the electrodes increases. In this work, a novel DEP setup is proposed to reduce the resistance mismatch in manufacturing carbon nanotube-based sensors. The proposed setup utilizes hot airflow and thermal annealing to fabricate long-aligned multi-walled carbon nanotube (MWCNT) bridges across transparent electrodes with a gap width up to 75 μm. The best alignment results were obtained at airflow velocities between 1.5 m s and 2.5 m s. The minimum variation in the resistance of the aligned bridges was 1.81% observed at a MWCNT concentration of 0.005 wt% and deposition time of 10 min. Long MWCNT bridges have many contact points that link MWCNTs to each other, making the contact resistance a robust indicator of the variation in the ambient temperature. The characteristics of the MWCNT bridges as a temperature sensor, including the response, sensitivity, and recovery, were investigated.

摘要

介电电泳(DEP)方法用于通过在电极结构上组装和排列碳纳米管(CNT)来制造传感器装置。随着电极之间间隙宽度的增加,该方法的挑战也会增加。在这项工作中,提出了一种新颖的DEP装置,以减少制造基于碳纳米管的传感器时的电阻失配。所提出的装置利用热气流和热退火来在间隙宽度高达75μm的透明电极上制造长排列的多壁碳纳米管(MWCNT)桥。在气流速度为1.5 m/s至2.5 m/s之间时获得了最佳排列结果。在MWCNT浓度为0.005 wt%和沉积时间为10分钟时,观察到排列桥的电阻最小变化为1.81%。长MWCNT桥有许多将MWCNT相互连接的接触点,使得接触电阻成为环境温度变化的可靠指标。研究了MWCNT桥作为温度传感器的特性,包括响应度、灵敏度和恢复情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b149/9044456/228fafc8f8d6/d1ra08250g-f1.jpg

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