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首页> 外文期刊>Journal of Materials Science >Ammonia sensing by hydrochloric acid doped poly(m-aminophenol)-silver nanocomposite
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Ammonia sensing by hydrochloric acid doped poly(m-aminophenol)-silver nanocomposite

机译:盐酸掺杂聚(间氨基苯酚)-银纳米复合材料的氨感测

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Processable poly(m-aminophenol) (PmAP) was synthesized using ammonium persulfate oxidant in 0.6 M sodium hydroxide solution at room temperature. Then, in situ PmAP-silver nanocomposite film was obtained by casting PmAP film from dimethyl sulfoxide with silver hydroxide ammonia mixture at 140 °C. The nanocomposite film was doped with hydrochloric acid (HCl) by general solution doping technique. The undoped and HCl-doped films were characterized by ultraviolet visible spectroscopy, Fourier transformed Infrared spectroscopy, transmittance electron microscopy (TEM), scanning electron microscopy (SEM) and X-ray diffraction analysis. Spectroscopic characterizations confirmed that the PmAP was doped by silver nanoparticles and it was further doped by HCl used. So, the synthesized PmAP-silver nanocomposite showed a conductivity of 1.01 × 10~(-6) S/cm, which was increased to 3.27 × 10~(-4) S/cm after HCl doping. The well dispersed silver nanoparticles with average size 130-150 nm was observed by SEM and TEM analysis. Unlike conventional ammonia sensor here, the resistivity of the nanocomposite film was decreased on exposure to ammonia gas and the sensing properties of the HCl-doped nanocomposite films were also reproducible. It can be seen that the % response of doped nanocomposite was unchanged while, the response time was decreased with increasing ammonia vapor concentrations in air. The ammonia-sensing characteristics of the HCl-doped nanocomposite film was explained on the basis of a proposed mechanism.
机译:在室温下,使用过硫酸铵氧化剂在0.6 M氢氧化钠溶液中合成可加工的聚(间氨基苯酚)(PmAP)。然后,通过在140℃下由二甲基亚砜和氢氧化银氨混合物流延PmAP膜来获得原位PmAP-银纳米复合膜。通过常规溶液掺杂技术将纳米复合膜掺杂有盐酸(HCl)。通过紫外可见光谱,傅立叶变换红外光谱,透射电子显微镜(TEM),扫描电子显微镜(SEM)和X射线衍射分析对未掺杂和HCl掺杂的膜进行表征。光谱表征证实PmAP被银纳米颗粒掺杂,并且被所使用的HCl进一步掺杂。因此,合成的PmAP-银纳米复合材料的电导率为1.01×10〜(-6)S / cm,在HCl掺杂后提高到3.27×10〜(-4)S / cm。通过SEM和TEM分析观察到平均尺寸为130-150nm的分散良好的银纳米颗粒。与此处的常规氨传感器不同,纳米复合膜的电阻率在暴露于氨气时降低,并且还可以重现HCl掺杂纳米复合膜的传感特性。可以看出,掺杂的纳米复合材料的%响应没有变化,而响应时间随空气中氨气浓度的增加而减少。在提出的机理的基础上解释了HCl掺杂的纳米复合膜的氨感测特性。

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