Zhang Zuobin, Yi Jianxin, Han Hongjie, Meng Yuqing, Zhang He, Jiang Yong
State Key Laboratory of Fire Science, Department of Safety Science and Engineering, University of Science and Technology of China, Hefei 230026, P. R. China.
Department of Materials Science and Engineering, University of Science and Technology of China, Hefei 230026, P. R. China.
ACS Appl Mater Interfaces. 2022 Jul 18. doi: 10.1021/acsami.2c09642.
High-performance noble metal-free gas sensors are crucial for widespread applications in various areas. Non-Nernstian electrochemical sensors have attracted tremendous attention, but are limited by the high cost and low efficiency of Pt electrode. Moreover, responses from different electrodes usually have the same polarity, degrading the sensor performance. Here we report a reverse response on a series of mixed ionic-electronic conductors (MIECs). Exemplary SrFeTiO (SFT50) perovskite shows excellent H sensing properties, including high sensitivity and selectivity, humidity resistance, and long-term stability. Strikingly, the response is positive, as opposed to the usual one. Such an unusual response is ascribed to the change of the surface electrostatic potential due to the gas chemical reaction, which outcompetes traditional mechanisms, thereby reversing the response polarity. A conceptual noble-metal-free sensor with dual oxide electrodes of opposite polarity is designed by substituting SFT50 for the benchmark Pt, achieving a 1.5-2.0× increase in H response, sensitivity, and selectivity and a low limit of detection of 16 ppb. The ideal unity of excellent sensing and unusual polarity for MIECs can be used to optimize the performance of a variety of conventional sensors while reducing the cost. Our findings provide new insights into electrochemical gas sensing and offer a facile approach for developing low-cost high-performance gas sensors.
高性能无贵金属气体传感器对于在各个领域的广泛应用至关重要。非能斯特电化学传感器已引起了极大关注,但受限于铂电极的高成本和低效率。此外,不同电极的响应通常具有相同的极性,这会降低传感器性能。在此,我们报道了一系列混合离子电子导体(MIECs)上的反向响应。典型的SrFeTiO(SFT50)钙钛矿表现出优异的氢气传感特性,包括高灵敏度和选择性、耐湿性以及长期稳定性。引人注目的是,其响应是正向的,与通常情况相反。这种不寻常的响应归因于气体化学反应导致的表面静电势变化,该变化胜过传统机制,从而使响应极性反转。通过用SFT50替代基准铂,设计了一种具有相反极性双氧化物电极的概念性无贵金属传感器,实现了氢气响应、灵敏度和选择性提高1.5 - 2.0倍,检测下限低至16 ppb。MIECs优异传感性能与不寻常极性的理想结合可用于优化各种传统传感器的性能,同时降低成本。我们的发现为电化学气体传感提供了新的见解,并为开发低成本高性能气体传感器提供了一种简便方法。