Chen Xiangxiang, Liu Tianhao, Ouyang Yunfei, Huang Shiyi, Zhang Zhaoyang, Liu Fangzheng, Qiu Lu, Wang Chicheng, Lin Xincheng, Chen Junyan, Shen Yanbai
Zijin School of Geology and Mining, Fuzhou University, Fuzhou 350108, China.
Fujian Key Laboratory of Green Extraction and High Value Utilization of New Energy Metals, Fuzhou 350108, China.
Sensors (Basel). 2023 Dec 25;24(1):120. doi: 10.3390/s24010120.
The functionalization of noble metals is an effective approach to lowering the sensing temperature and improving the sensitivity of metal oxide semiconductor (MOS)-based gas sensors. However, there is a dearth of comparative analyses regarding the differences in sensitization mechanisms between the two functionalization modes of noble metal loading and doping. In this investigation, we synthesized Pt-doped CuO gas-sensing materials using a one-pot hydrothermal method. And for Pt-loaded CuO, Pt was deposited on the synthesized pristine CuO surface by using a dipping method. We found that both functionalization methods can considerably enhance the response and selectivity of CuO toward NO at low temperatures. However, we observed that CuO with Pt loading had superior sensing performance at 25 °C, while CuO with Pt doping showed more substantial response changes with an increase in the operating temperature. This is mainly due to the different dominant roles of electron sensitization and chemical sensitization resulting from the different forms of Pt present in different functionalization modes. For Pt doping, electron sensitization is stronger, and for Pt loading, chemical sensitization is stronger. The results of this study present innovative ideas for understanding the optimization of noble metal functionalization for the gas-sensing performance of metal oxide semiconductors.
贵金属功能化是降低基于金属氧化物半导体(MOS)的气体传感器传感温度和提高其灵敏度的有效方法。然而,关于贵金属负载和掺杂这两种功能化模式之间敏化机制的差异,目前缺乏比较分析。在本研究中,我们采用一锅水热法合成了铂掺杂的氧化铜气敏材料。对于负载铂的氧化铜,通过浸渍法将铂沉积在合成的原始氧化铜表面。我们发现,两种功能化方法都能在低温下显著提高氧化铜对一氧化氮的响应和选择性。然而,我们观察到,负载铂的氧化铜在25℃时具有优异的传感性能,而掺杂铂的氧化铜随着工作温度的升高显示出更显著的响应变化。这主要是由于不同功能化模式中铂的存在形式不同,导致电子敏化和化学敏化的主导作用不同。对于铂掺杂,电子敏化更强,对于铂负载,化学敏化更强。本研究结果为理解金属氧化物半导体气敏性能的贵金属功能化优化提供了创新思路。