首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Alkylsilane-functionalized perylenediimide derivatives with differential gas sensing properties
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Alkylsilane-functionalized perylenediimide derivatives with differential gas sensing properties

机译:具有不同气敏特性的烷基硅烷官能化per二酰亚胺衍生物

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In this investigation, four perylenediimide derivatives (PTCDIs) with different lengths and branched points of alkyl chains on bay region were prepared to probe the effect of alkyl chains on sensing performance. Studies on the sensing properties of these derivatives in hydrazine vapor revealed that an increased current of about 4 orders of magnitude was achieved for TPSA. This value is ca. 2, 2 and 23 times higher than that of DMB, TMSA and TESA, respectively. The differential response of these PTCDIs gas sensors to the hydrazine vapor is not much dependent on their surface area and morphologies. A well-ordered layer structure with smaller interplanar spacing endows TPSA with a highly efficient sensing performance. A similar face-face packing mode and torsional angle of DMB and TMSA cause both of them to exhibit almost same sensing performance, in spite of the differences in their interplanar spacing. However, a greater torsional angle and head-to-tail aggregated modes with greater interplanar spacing induce a less efficient sensing performance of TESA sensors. This study indicates that the length and branched point of alkylsilane on the bay region have significant impact on the performance of PTCDIs gas-sensing devices because they can modulate torsional angle, interplanar spacing and stacking modes.
机译:在这项研究中,准备了四个不同长度和间隔区域上烷基链分支点的per二酰亚胺衍生物(PTCDI),以探测烷基链对传感性能的影响。对这些衍生物在肼蒸气中的感测特性的研究表明,TPSA的电流增加了约4个数量级。此值为ca。分别是DMB,TMSA和TESA的2倍,2倍和23倍。这些PTCDI气体传感器对肼蒸气的不同响应在很大程度上不依赖于它们的表面积和形态。平面间距较小的井井有条的层结构赋予TPSA高效的传感性能。尽管它们的面间距不同,但DMB和TMSA的相似的面-面堆积模式和扭转角使它们都表现出几乎相同的传感性能。但是,较大的扭转角和具有较大的面间距的头尾聚合模式会导致TESA传感器的感应性能降低。这项研究表明,海湾硅烷区域上烷基硅烷的长度和支化点对PTCDIs气敏器件的性能有重大影响,因为它们可以调节扭转角,晶面间距和堆叠方式。

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