纳米晶材料
异质结
接口(物质)
材料科学
氢
纳米晶
钻石
纳米技术
光电子学
化学物理
化学
冶金
毛细管数
复合材料
有机化学
毛细管作用
作者
Bohr‐Ran Huang,Deepa Kathiravan,H. C. Hsieh,Wen‐Luh Yang
标识
DOI:10.1021/acsanm.5c00884
摘要
Hydrogen sensors are critical for safety and efficiency in industrial and energy applications, particularly in the evolving hydrogen economy. Herein, we present a hydrogen sensor based on ZnO, Ga 2 O 3 (GaO), and nitrogen-doped ultrananocrystalline diamond ( N -UNCD), demonstrating superior sensing performance with minimal decay (<3.1%) after 30 days of operation. The ZnO–GaO/a-ND heterostructure exhibits a unique surface morphology, attributed to the incorporation of wide-bandgap Ga 2 O 3, which enhances electron mobility and improves charge transfer mechanisms. The sensor achieved a high response of 72.1% for 500 ppm of H 2 at room temperature, with excellent reproducibility over 15 on–off cycles and stable operation under varying conditions. The heterostructure also showed remarkable selectivity for H 2 over interfering gases, including NH 3, CO 2, and acetone, and retained stability under extended operation. This work will contribute to the literature, as no prior studies have explored the synergistic effects of ZnO, GaO, and N -UNCD for hydrogen sensing, establishing a strong platform for developing next-generation gas sensors with enhanced sensitivity, selectivity, and long-term stability.
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