分层多孔棒状In2S3/In2O3结构用于三甲胺检测

IF 2.6 4区 材料科学 Q2 CHEMISTRY, MULTIDISCIPLINARY
ChemNanoMat Pub Date : 2024-12-01 DOI:10.1002/cnma.202400507
Dan Meng, Yubo Pan, Lei Zhang, Yue Zhang, Chun He, Kai Tao, Size Li, Xiaoguang San
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引用次数: 0

摘要

三甲胺(TMA)是一种具有强烈刺鼻气味的挥发性气体,被广泛认为是评估鱼类新鲜度的指标。尽管TMA检测具有重要意义,但同时具有高灵敏度,快速响应动力学,选择性和低温操作的传感器的开发仍然是一个挑战。为了解决这一问题,本研究提出了一种由多孔棒状In2S3/ In2O3结构组成的新型气敏材料,通过原位硫化工艺合成。通过调整硫代乙酰胺的浓度,精确调节In2O3的硫化状态,优化材料的结构和组成性能,提高传感性能。实验结果表明,由于In2S3/ In2O3异质结的协同作用,对氧分子的吸附能力增强,以及独特的一维和多孔结构,硫的掺入显著提高了传感器的性能。值得注意的是,S/In摩尔比为1/3的传感器在150°C下具有出色的TMA检测,响应值最高(0.1 ppm为2.17,10 ppm为8.17),响应/恢复时间快,选择性好,检测限低至0.05 ppm。此外,该传感器表现出出色的重复性和长期稳定性,突出了其在海鲜新鲜度监测中的实际应用潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hierarchical Porous Rod-Like In2S3/In2O3 Structures for Trimethylamine Detection

Trimethylamine (TMA), a volatile gas possessing a strong, pungent odor, is widely recognized as an indicator for evaluating fish freshness. Despite the importance of TMA detection, the development of sensors that simultaneously possess high sensitivity, fast response kinetics, selectivity, and low-temperature operation remains a challenge. To address this issue, this work presents a novel gas-sensing material composed of porous, rod-like In2S3/ In2O3 structures, synthesized via an in-situ sulfurization process. By precisely modulating the sulfurization state of In2O3 through the adjustment of thioacetamide concentrations, the material's structural and compositional properties were optimized for enhanced sensing performance. Experimental results demonstrate that sulfur incorporation significantly improves sensor capabilities, owing to the synergistic effects of the In2S3/ In2O3 heterojunction, the enhanced adsorption capacity for oxygen molecules, and the distinctive one-dimensional and porous architecture. Notably, the sensor with an S/In molar ratio of 1/3 exhibited exceptional TMA detection at 150 °C, with the highest response values (2.17 for 0.1 ppm and 8.17 for 10 ppm), rapid response/recovery times, excellent selectivity, and a low detection limit of 0.05 ppm. Moreover, the sensor demonstrated outstanding reproducibility and long-term stability, highlighting its potential for practical applications in seafood freshness monitoring.

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来源期刊
ChemNanoMat
ChemNanoMat Energy-Energy Engineering and Power Technology
CiteScore
6.10
自引率
2.60%
发文量
236
期刊介绍: ChemNanoMat is a new journal published in close cooperation with the teams of Angewandte Chemie and Advanced Materials, and is the new sister journal to Chemistry—An Asian Journal.
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