Annanouch Fatima E, Haddi Z, Ling M, Di Maggio F, Vallejos S, Vilic T, Zhu Y, Shujah T, Umek P, Bittencourt C, Blackman C, Llobet E
MINOS-EMaS, Universitat Rovira i Virgili , Avenida Països Catalans 26, 43007 Tarragona, Spain.
Laboratoire des Sciences de l'Information et des Systèmes (LSIS), Aix-Marseille University , 13284 Marseille, France.
ACS Appl Mater Interfaces. 2016 Apr 27;8(16):10413-21. doi: 10.1021/acsami.6b00773. Epub 2016 Apr 18.
We report for the first time the successful synthesis of palladium (Pd) nanoparticle (NP)-decorated tungsten trioxide (WO3) nanoneedles (NNs) via a two-step aerosol-assisted chemical vapor deposition approach. Morphological, structural, and elemental composition analysis revealed that a Pd(acac)2 precursor was very suitable to decorate WO3 NNs with uniform and well-dispersed PdO NPs. Gas-sensing results revealed that decoration with PdO NPs led to an ultrasensitive and selective hydrogen (H2) gas sensor (sensor response peaks at 1670 at 500 ppm of H2) with low operating temperature (150 °C). The response of decorated NNs is 755 times higher than that of bare WO3 NNs. Additionally, at a temperature near that of the ambient temperature (50 °C), the response of this sensor toward the same concentration of H2 was 23, which is higher than that of some promising sensors reported in the literature. Finally, humidity measurements showed that PdO/WO3 sensors displayed low-cross-sensitivity toward water vapor, compared to bare WO3 sensors. The addition of PdO NPs helps to minimize the effect of ambient humidity on the sensor response.
我们首次报道了通过两步气溶胶辅助化学气相沉积法成功合成了钯(Pd)纳米颗粒(NP)修饰的三氧化钨(WO₃)纳米针(NNs)。形态、结构和元素组成分析表明,Pd(acac)₂前驱体非常适合用均匀且分散良好的PdO NPs修饰WO₃ NNs。气敏结果表明,用PdO NPs修饰可得到一种超灵敏且选择性的氢气(H₂)气体传感器(在500 ppm H₂时传感器响应峰值为1670),其工作温度较低(150°C)。修饰后的NNs的响应比未修饰的WO₃ NNs高755倍。此外,在接近环境温度(50°C)时,该传感器对相同浓度H₂的响应为23,高于文献中报道的一些有前景的传感器。最后,湿度测量表明,与未修饰的WO₃传感器相比,PdO/WO₃传感器对水蒸气表现出低交叉敏感性。添加PdO NPs有助于将环境湿度对传感器响应的影响降至最低。