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火焰制备的负载铱的氧化铟纳米颗粒传感器对丙酮相对于各种肝病气体标志物的性能和选择性

Performance and Selectivity toward Acetone against Various Gaseous Markers for Liver Diseases of Flame-Made Ir-Loaded InO Nanoparticulate Sensors.

作者信息

Punginsang Matawee, Chaemsai Aitthiphat, Inyawilert Kanittha, Siriwalai Mameaseng, Wisitsoraat Anurat, Liewhiran Chaikarn

机构信息

Office of Research Administration, Chiang Mai University, Chiang Mai 50200, Thailand.

Department of Physics and Materials Science, Faculty of Science, Chiang Mai University, Chiang Mai 50200, Thailand.

出版信息

ACS Sens. 2025 Aug 22;10(8):5748-5759. doi: 10.1021/acssensors.5c00888. Epub 2025 Aug 7.

Abstract

In this work, iridium (Ir) loaded indium oxide (InO) nanoparticles made via a flame spray pyrolysis (FSP) technique for the first time were systematically investigated for acetone (CHO) detection at ppb levels. The structural data based on microscopic and spectroscopic analyses unveiled that 3-6 nm secondary metallic Ir nanoparticles were loaded on 8-15 nm cubic InO nanoparticles with uniform dispersion at a low Ir content of 0.5 wt % or less. Sensing films fabricated from the powders via a spin-coating process were assessed for their gas-sensing properties toward four groups of breath gases including environmental gases, volatile organic compounds, volatile organic acids or short-chain fatty acids, and volatile sulfur compounds. From the test results, the optimum Ir loading level of 0.5 wt % yielded the highest response ( = 6.02-1000 ppb CHO) with a low detection limit of 10.7 ppb and good acetone selectivity against numerous breath gases at 300 °C. In addition, the 0.5 wt % Ir-loaded InO sensor exhibited a modestly low acetone response decline of less than 25% in humid air (80%RH) at 300 °C. Consequently, the 0.5 wt % Ir-loaded InO nanomaterial was attractive for sensitive detections of acetone at ppb levels applicable to medical applications, including initial screening of liver diseases.

摘要

在本研究中,首次对通过火焰喷雾热解(FSP)技术制备的负载铱(Ir)的氧化铟(InO)纳米颗粒进行了系统研究,以检测ppb水平的丙酮(CHO)。基于显微镜和光谱分析的结构数据表明,在低Ir含量(0.5 wt%或更低)下,3-6 nm的次级金属Ir纳米颗粒均匀分散地负载在8-15 nm的立方InO纳米颗粒上。通过旋涂工艺由这些粉末制成的传感膜,针对包括环境气体、挥发性有机化合物、挥发性有机酸或短链脂肪酸以及挥发性硫化合物在内的四类呼吸气体,评估了它们的气敏性能。从测试结果来看,0.5 wt%的最佳Ir负载量产生了最高响应( = 6.02-1000 ppb CHO),检测限低至10.7 ppb,并且在300°C下对多种呼吸气体具有良好的丙酮选择性。此外,0.5 wt% Ir负载的InO传感器在300°C的潮湿空气中(80%RH),丙酮响应下降幅度适中,低于25%。因此,0.5 wt% Ir负载的InO纳米材料对于ppb水平的丙酮敏感检测具有吸引力,适用于包括肝病初步筛查在内的医学应用。

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