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氨基蒽醌:合成、表征及其作为环境传感器活性材料的应用。

Amino Anthraquinone: Synthesis, Characterization, and Its Application as an Active Material in Environmental Sensors.

作者信息

Ali Salman, Tahir Muhammad, Mehboob Nasir, Wahab Fazal, J Langford Steven, Mohd Said Suhana, R Sarker Mahidur, Julai Sabariah, Hamid Md Ali Sawal

机构信息

Faculty of Science, Engineering and Technology, Swinburne University of Technology, Hawthorn Victoria 3122, Australia.

Department of Physics, Faculty of Physical and Numerical Sciences, Abdul Wali Khan University Mardan, Khyber Pakhtunkhwa 23200, Pakistan.

出版信息

Materials (Basel). 2020 Feb 21;13(4):960. doi: 10.3390/ma13040960.

Abstract

This work reports synthesis, thin film characterizations, and study of an organic semiconductor 2-aminoanthraquinone (AAq) for humidity and temperature sensing applications. The morphological and phase studies of AAq thin films are carried out by scanning electron microscope (SEM), atomic force microscope (AFM), and X-ray diffraction (XRD) analysis. To study the sensing properties of AAq, a surface type Au/AAq/Au sensor is fabricated by thermally depositing a 60 nm layer of AAq at a pressure of ~10 mbar on a pre-patterned gold (Au) electrodes with inter-electrode gap of 45 µm. To measure sensing capability of the Au/AAq/Au device, the variations in its capacitance and resistance are studied as a function of humidity and temperature. The Au/AAq/Au device measures and exhibits a linear change in capacitance and resistance when relative humidity (%RH) and temperature are varied. The AAq is a hydrophobic material which makes it one of the best candidates to be used as an active material in humidity sensors; on the other hand, its high melting point (575 K) is another appealing property that enables it for its potential applications in temperature sensors.

摘要

本工作报道了用于湿度和温度传感应用的有机半导体2-氨基蒽醌(AAq)的合成、薄膜表征及研究。通过扫描电子显微镜(SEM)、原子力显微镜(AFM)和X射线衍射(XRD)分析对AAq薄膜进行形态和相研究。为研究AAq的传感特性,通过在压力约为10毫巴的条件下,在电极间隙为45微米的预图案化金(Au)电极上热沉积60纳米厚的AAq层,制备了表面型Au/AAq/Au传感器。为测量Au/AAq/Au器件的传感能力,研究了其电容和电阻随湿度和温度的变化。当相对湿度(%RH)和温度变化时,Au/AAq/Au器件测量并呈现出电容和电阻的线性变化。AAq是一种疏水材料,这使其成为湿度传感器中用作活性材料的最佳候选材料之一;另一方面,其高熔点(575 K)是另一个吸引人的特性,使其在温度传感器中具有潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/57f1/7079597/8d5634530eb3/materials-13-00960-g001.jpg

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