用于乙醇气体传感器的掺钆和掺锰 Fe2O3-LaFeO3- La2O3 厚膜的电学特性

Gizella Mentari Putri, Endi Suhend, Muhamad Taufik Ulhakim, A. Setiawan, D. G. Syarif
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摘要

本文研究了基于 Gd- 和 Mn- 掺杂 Fe2O3-LaFeO3-La2O3 厚膜的乙醇气体传感的电学特性。采用共沉淀法合成了掺钆和掺锰的 Fe2O3- LaFeO3-La2O3,并利用丝网印刷技术将其制成厚膜,烧结温度为 900 ∘C。通过 X 射线衍射和扫描电子显微镜测定了晶体和形貌结构。结果表明,Fe2O3-LaFeO3-La2O3 的合成材料具有三种相,即四方相、立方相和六方相。此外,平均粒径约为 0.51 μm。在所有这些情况下,合成材料都显示出良好的乙醇气体传感性能,这一点在电性能测量中也有所体现。在乙醇含量为 0ppm、100ppm、200ppm 和 300ppm 的情况下,对 A 进行了不同的测试。对乙醇气体的最高响应在 300 ppm 时达到 332,最佳温度为 289∘C。我们希望我们的研究结果能为将来乙醇气体传感器的完美制造带来益处和帮助。关键词:电性能、厚膜、掺杂、乙醇、传感器
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electrical Properties of Gd- and Mn-Doped Fe2O3-LaFeO3- La2O3 Thick Films for Ethanol Gas Sensors
Herein, electrical properties of ethanol gas sensing based on Gd- and Mn- doped Fe2O3-LaFeO3-La2O3 thick films were investigated. The Gd- and Mn-doped Fe2O3- LaFeO3-La2O3 were synthesized by coprecipitation method and formed to thick films using screen-printing techniques with sintering temperature at 900 ∘C. X-ray diffraction and scanning electron microscopy were conducted to determine the crystal and morphological structures. The results showed that the synthesized materials have three phases i.e., tetragonal, cubic, and hexagonal, respectively for Fe2O3-LaFeO3-La2O3. Also, the average particle size is of about 0.51 μm. Among all those circumstances, synthesized materials indicate good performances as ethanol gas sensing that showed in the electrical properties’ measurement. It tested A differently in ethanol containing i.e., 0 ppm, 100 ppm, 200 ppm, and 300 ppm. The highest response to ethanol gases reached at 300 ppm, it is 332 with optimum temperature at 289∘C. We hope our findings could be beneficial and helpful in the perfect fabrication of ethanol gas sensors in future. Keywords: electrical properties, thick films, doped, ethanol, sensors
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