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两亲性嵌段共聚物诱导的类脑回状氧化铟厚膜对低浓度丙酮的超灵敏传感性能

Ultrasensitive sensing performances of amphiphilic block copolymer induced gyrus-like InO thick films to low-concentration acetone.

作者信息

Li Ling, Wan Guiwen, Cui Xinling, Wang Yuwei

机构信息

School of Materials Science and Engineering, Shandong Jianzhu University Jinan 250100 China

Technology and Information Technology Department, China Railway Jinan Group Co. Ltd Jinan 250001 China.

出版信息

RSC Adv. 2023 Jul 10;13(30):20575-20583. doi: 10.1039/d3ra03063f. eCollection 2023 Jul 7.

Abstract

In the present work, an inducible assembly of di-block polymer compounds approach was employed for the synthesis of mesoscopic gyrus-like InO by using lab-made high-molecular-weight amphiphilic di-block copolymer poly(ethylene oxide)--polystyrene (PEO--PS) as a revulsive, with indium chloride as an indium source and THF/ethanol as the solvent. The obtained mesoscopic gyrus-like InO indium oxide materials exhibit a large surface area and a highly crystalline InO nanostructure framework, and the gyrus distance is about 40 nm, which can facilitate the diffusion and transport of acetone vapor molecules. By using this material as a chemoresistance sensor, the obtained gyrus-like indium oxides were used as sensing materials, showing an excellent performance to acetone at a low operating temperature (150 °C) due to their high porosity and unique crystalline framework. The limit of detection of the thick-film sensor based on indium oxides is appropriate for diabetes exhaled breath acetone concentration detection. Moreover, the thick-film sensor shows a very fast response-recovery dynamics upon contacting acetone vapor due to its abundant open folds mesoscopic structure, and also to the large surface area of the nanocrystalline gyrus-like InO.

摘要

在本工作中,采用一种可诱导组装的二嵌段聚合物化合物方法,以实验室自制的高分子量两亲性二嵌段共聚物聚环氧乙烷-聚苯乙烯(PEO-PS)为驱避剂,氯化铟为铟源,四氢呋喃/乙醇为溶剂,合成介观回状氧化铟。所制备的介观回状氧化铟材料具有较大的表面积和高度结晶的氧化铟纳米结构框架,回距约为40nm,这有利于丙酮蒸汽分子的扩散和传输。将该材料用作化学电阻传感器,所制备的回状氧化铟用作传感材料,由于其高孔隙率和独特的晶体框架,在低工作温度(150°C)下对丙酮表现出优异的性能。基于氧化铟的厚膜传感器的检测限适用于糖尿病呼出气体丙酮浓度检测。此外,由于其丰富的开放褶皱介观结构以及纳米晶回状氧化铟的大表面积,厚膜传感器在接触丙酮蒸汽时显示出非常快的响应-恢复动力学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee10/10331797/76cae3d2b42a/d3ra03063f-f1.jpg

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