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Colloidal lithography nanostructured Pd/PdOx core-shell sensor for ppb level H2S

机译:用于PPB水平H2S的胶体光刻纳米结构PD / PDOX核心壳传感器

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摘要

In this work we report on plasma oxidation of palladium (Pd) to form reliable palladium/palladium oxide (Pd/PdOx) core-shell sensor for ppb level H2S detection and its performance improvement through nanostructuring using hole-mask colloidal lithography (HCL). The plasma oxidation parameters and the sensor operating conditions are optimized to arrive at a sensor device with high sensitivity and repeatable response for H2S. The plasma oxidized palladium/palladium oxide sensor shows a response of 43.1% at 3 ppm H2S at the optimum operating temperature of 200 degrees C with response and recovery times of 24 s and 155 s, respectively. The limit of detection (LoD) of the plasma oxidised beam is 10 ppb. We further integrate HCL, a bottom-up and cost-effective process, to create nanodiscs of fixed diameter of 100 nm and varying heights (10, 15 and 20 nm) on 10 nm thin Pd beam which is subsequently plasma oxidized to improve the H2S sensing characteristics. The nanostructured Pd/PdOx sensor with nanodiscs of 100 nm diameter and 10 nm height shows an enhancement in sensing performance by 11.8% at same operating temperature and gas concentration. This nanostructured sensor also shows faster response and recovery times (15s and 100s, respectively) compared to the unstructured Pd/PdOx counterpart together with an experimental LoD of 10 ppb and the estimated limit going all the way down to 2 ppb. Material characterization of the fabricated Pd/PdOx sensors is done using UV-vis spectroscopy and x-ray photoemission spectroscopy.
机译:在这项工作中,我们报告钯(Pd)的血浆氧化,形成可靠的钯/钯氧化物(Pd / Pdox)核壳传感器,用于使用空穴掩模胶体光刻(HCl)通过纳米结构通过纳米结构进行性能改善。等离子体氧化参数和传感器操作条件经过优化,以获得具有高灵敏度和H2S的可重复响应的传感器装置。等离子体氧化钯/钯氧化物传感器显示在200摄氏度的最佳工作温度为33.1%的响应,其中24 s和155秒的响应和恢复时间分别为200℃。等离子体氧化束的检测极限是10ppb。我们进一步整合HCL,自下而上和经济效益的过程,以在10nm薄PD束上产生100nm的固定直径100nm和不同的高度(10,15和20nm),随后氧化以改善H2S以改善H2S感应特征。纳米结构的PD / PDOX传感器具有100nm直径为100nm和10nm的高度,显示出在相同的操作温度和气体浓度下的感测性能的增强率为11.8%。该纳米结构传感器还显示出与非结构化PD / PDOX对应物相比更快的响应和恢复时间(分别为15s和100s)与10ppb的实验速度相比,估计的限制一直下降到2 ppb。使用UV-VIS光谱和X射线照相激光谱完成制造的PD / PDOX传感器的材料表征。

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