State Key Laboratory on Integrated Optoelectronics, College of Electronic Science and Engineering, Jilin Prov Key Lab Gas Sensors, Jilin University, 2699 Qianjin Street, Changchun 130012, China.
Shenyang Academy of Instrumentation Science CO., LTD., 242 Beihai Street, Shenyang 110043, China.
ACS Sens. 2024 Apr 26;9(4):1967-1977. doi: 10.1021/acssensors.3c02702. Epub 2024 Mar 17.
Bimetallic nanocrystals (NCs) have obtained significant attention due to their unique advantages of the intrinsic properties of individual metals and synergistic enhancements resulting from the electronic coupling between two constituent metals. In this work, Pd@Pt core-shell NCs were prepared through a facile one-pot solution-phase method, which had excellent dispersion and uniform size. Concurrently, ZnO nanosheets were prepared via a hydrothermal method. To explore their potential in nitrogen dioxide (NO) gas sensing applications, sensitive materials based on ZnO nanosheets with varying mass percentages of Pd@Pt NCs were generated through an impregnation process. The sensor based on 0.3 wt % Pd@Pt-ZnO exhibited remarkable performance, demonstrating a substantial response (/ = 60.3) to 50 ppb of NO at a low operating temperature of 80 °C. Notably, this sensor reached an outstanding low detection limit of 300 ppt. The enhancement in gas sensing capabilities can be attributed to the sensitization and synergistic effects imparted by the exceptional catalytic activity of Pd@Pt NCs, which significantly promoted the reaction. This research introduces a novel approach for the utilization of core-shell structured bimetallic nanocrystals as modifiers in metal-oxide-semiconductor (MOS) materials for NO detection.
双金属纳米晶体(NCs)由于其独特的内在性质以及两种组成金属之间的电子耦合所产生的协同增强作用而受到了广泛关注。在这项工作中,通过简便的一锅溶液相法制备了 Pd@Pt 核壳 NCs,其具有良好的分散性和均匀的尺寸。同时,通过水热法制备了 ZnO 纳米片。为了探索其在二氧化氮(NO)气体传感应用中的潜力,通过浸渍法制备了基于 ZnO 纳米片且具有不同质量百分比 Pd@Pt NCs 的敏感材料。基于 0.3wt%Pd@Pt-ZnO 的传感器在 80°C 的低工作温度下对 50ppb 的 NO 表现出显著的性能,响应值为 60.3。值得注意的是,该传感器的检测下限低至 300ppt。气体传感性能的增强可归因于 Pd@Pt NCs 的异常催化活性所带来的敏化和协同效应,这显著促进了反应。这项研究为利用核壳结构的双金属纳米晶体作为 MOS 材料中 NO 检测的修饰剂引入了一种新方法。