Fast Vapor Detection by a Micropillar Array-integrated Colorimetric Sensor

T. Palinski, B. Guan, B. Bradshaw-Hajek, M. Lienhard, C. Priest, F. Miranda
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Abstract

An optofluidic sensor for rapid detection of gas-phase analytes from a flowing micro-volume fluid sample towards wearable colorimetric sensing is reported. The sensor is comprised of a metal-insulator-metal (MIM) thin-film structure integrated with a quartz micropillar array for improved delivery of vapor analytes onto the sensing surface. For our proof-of-principle demonstration, we utilized a poly(methyl methacrylate) (PMMA) spacer and evaluated its response to ethanol vapors that were delivered in close proximity to the sensing material via the micropillar array. It is demonstrated that the micropillar array reduces the sensor response time from minutes to seconds compared with experiments using a conventional chamber. The sensor’s concentration-dependent response also confirms its potential for continuous, compact, and quantitative colorimetric analysis of volatile analytes in low-volume samples.
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微柱阵列集成比色传感器的快速蒸汽检测
报道了一种用于从流动的微体积流体样品中快速检测气相分析物的可穿戴比色传感器。该传感器由金属-绝缘体-金属(MIM)薄膜结构和石英微柱阵列组成,用于改善蒸汽分析物在传感表面的传递。在我们的原理验证演示中,我们使用了聚甲基丙烯酸甲酯(PMMA)间隔器,并评估了其对乙醇蒸气的响应,乙醇蒸气通过微柱阵列靠近传感材料。实验结果表明,与传统腔室相比,微柱阵列将传感器响应时间从几分钟缩短到几秒钟。该传感器的浓度依赖性响应也证实了其对小体积样品中挥发性分析物进行连续、紧凑和定量比色分析的潜力。
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