首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Vapor sensitivity of networked gold nanoparticle chemiresistors: Importance of flexibility and resistivity of the interlinkage
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Vapor sensitivity of networked gold nanoparticle chemiresistors: Importance of flexibility and resistivity of the interlinkage

机译:网络化金纳米粒子化学电阻的蒸气敏感性:互连的柔韧性和电阻率的重要性

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In this study we investigated the response behavior of chemiresistors made from differently interlinked networks of gold nanoparticles. Our results show that the degree of flexibility and conductivity of the interlinkage between the nanoparticles has a profound impact on the response characteristics of such sensors. 1,12-Dodecanedithiol was used as a hydrophobic, flexible linker compound. For comparison, [4]-staffane-3,3'''-dithiol provided a rigid, rodlike linkage, and 4,4'-terphenyldithiol was used as a rigid linker with enhanced conductivity due to its delocalized aromatic moieties. As determined by AFM, all three sensor coatings had similar thicknesses (similar to 30 nm), but the degree of interlinkage, as measured by XPS, was significantly higher in the case of the flexible network. All three materials showed linear current-voltage characteristics. The vapor sensitivity was tested by dosing the sensors with toluene, 1-propanol, 4-methyl-2-pentanone, and water in the concentration range 100-5000 ppm at 0% relative humidity. The flexible 1,12-dodecanedithiol interlinked film responded with an increase in resistance to these analytes and with the highest sensitivity to toluene. In striking contrast, the rigid staffane interlinked film responded with a decrease in resistance to all four analytes and with the highest sensitivity to 4-methyl-2-pentanone. The rigid but more conductive 4,4'-terphenyldithiol interlinked coating gave hardly any response, although microgravimetric measurements showed that similar amounts of analytes were absorbed as in the case of the other two sensor films. The different response characteristics are discussed in terms of film swelling and changes in permittivity.
机译:在这项研究中,我们调查了由金纳米粒子的不同互连网络制成的化学电阻的响应行为。我们的结果表明,纳米颗粒之间互连的柔韧性和导电性程度对此类传感器的响应特性产生了深远的影响。 1,12-十二烷二硫醇用作疏水的,柔性的连接基化合物。为了进行比较,[4]-硫烷-3,3'''-二硫醇提供了刚性的棒状键,并且由于其离域的芳族部分,4,4'-三苯基二硫醇被用作具有增强电导率的刚性接头。根据AFM的测定,所有三种传感器涂层的厚度均相似(类似于30 nm),但是对于XPS而言,在柔性网络中,互连度要高得多。这三种材料均显示出线性电流-电压特性。通过在0%相对湿度下给传感器添加甲苯,1-丙醇,4-甲基-2-戊酮和浓度范围为100-5000 ppm的水来测试蒸汽敏感性。柔性的1,12-十二烷二硫醇互连膜对这些分析物的耐受性增强,并且对甲苯的敏感性最高。与之形成鲜明对比的是,刚性的斯塔凡烷交联膜对所有四种分析物的抵抗力下降,并且对4-甲基-2-戊酮的敏感性最高。刚性但导电性更高的4,4'-三联苯二硫醇互连涂层几乎没有任何反应,尽管微重力测量显示与其他两个传感器膜一样,吸收了相似量的分析物。根据膜的膨胀和介电常数的变化讨论了不同的响应特性。

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