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Vanadyl Phthalocyanine Films and Their Hybrid Structures with Pd Nanoparticles: Structure and Sensing Properties

机译:钒基酞菁薄膜及其与Pd纳米粒子的杂化结构:结构和传感特性

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摘要

In this work, thin films of vanadyl phthalocyanines (VOPc and VOPcF ) are studied as active layers for the detection of gaseous ammonia and hydrogen. The effect of F-substituents on the structural features of vanadyl phthalocyanine films and their sensor response toward ammonia (10–50 ppm) and hydrogen (100–500 ppm) is investigated by X-ray diffraction (XRD) and chemiresistive methods, respectively. It is shown that the sensor response of VOPcF films to ammonia is 2–3 times higher than that of VOPc films. By contrast, the sensor response to hydrogen is higher in the case of VOPc films. Apart from this, the hybrid structures of vanadyl phthalocyanine films with Pd nanoparticles deposited on their surface by a chemical vapor deposition method are also tested to reveal the effect of Pd nanoparticles on the sensitivity of VOPc films to hydrogen. Deposition of Pd nanoparticles on the surface of VOPc films leads to the noticeable increase of their sensitivity to hydrogen.
机译:在这项工作中,研究了钒基酞菁薄膜(VOPc和VOPcF)作为检测气态氨和氢的活性层。通过X射线衍射(XRD)和化学方法分别研究了F取代基对钒基酞菁薄膜结构特征的影响及其对氨(10–50 ppm)和氢(100–500 ppm)的传感器响应。结果表明,VOPcF膜对氨的传感器响应比VOPc膜高2–3倍。相反,在VOPc膜的情况下,传感器对氢的响应更高。除此之外,还测试了通过化学气相沉积法在其表面沉积有Pd纳米粒子的钒基酞菁薄膜的杂化结构,以揭示Pd纳米粒子对VOPc薄膜对氢敏感性的影响。 POP纳米颗粒在VOPc膜表面的沉积导致其对氢的敏感性显着提高。

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