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首页> 外文期刊>New Journal of Chemistry >Probing the effect of substituted groups on sensory properties based on single-crystalline microanostructures of perylenediimide dyes
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Probing the effect of substituted groups on sensory properties based on single-crystalline microanostructures of perylenediimide dyes

机译:基于per二酰亚胺染料的单晶微/纳米结构探讨取代基对感官特性的影响

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摘要

Two core-tetrachlorinated perylenediimide derivatives PTCDI-CIC_(12) and PTCDI-CIC4F7 bearing electron-donor dodecyl and electron-withdrawing fluorobutyl groups at the imide positions, respectively, were prepared. The determination of sensing properties based on their conductometric gas sensors revealed that both devices had the same sensitivity to the hydrazine vapor and approximately 4 orders of magnitude in resistance decreased upon exposure to the hydrazine vapor (10 ppm). Whereas approximately 2 orders of magnitude in resistance decreased for another core-unsubstituted PTCDI-C_(12) gas sensor that was also prepared for comparison purpose. The differential response to the hydrazine vapor for the core-tetrachlorinated PTCDI-C1C_(12) and core-unsubstituted PTCDI-C_(12) was independent of their surface area and morphologies and was ascribed to the difference in their reduction potentials that originated from different bay-substituted groups and the twisted skeleton of the PTCDI-CIC_(12) molecule. The similar LUMO energy levels of PTCDI-C1C_(12) and PTCDI-CIC4F7 led to both of them possessing similar sensing performance, which in turn indicated that the substituents at the imide positions have little effect on the improvement of performance of perylenediimide derivatives gas sensors.
机译:制备了分别在酰亚胺位置上带有电子给体十二烷基和吸电子氟丁基的两个核心四氯化per二酰亚胺衍生物PTCDI-CIC_(12)和PTCDI-CIC4F7。基于其电导率气体传感器的感测特性确定表明,这两种设备对肼蒸汽的敏感性相同,并且在暴露于肼蒸汽(10 ppm)时电阻降低了大约4个数量级。而对于另一个为比较目的而准备的未取代核的PTCDI-C_(12)气体传感器,其电阻降低了大约2个数量级。核心四氯化PTCDI-C1C_(12)和未核心未取代的PTCDI-C_(12)对肼蒸气的不同响应与它们的表面积和形态无关,并且归因于其还原电位的差异是由于不同的海湾取代基和PTCDI-CIC_(12)分子的扭曲骨架。 PTCDI-C1C_(12)和PTCDI-CIC4F7的LUMO能级相似,导致它们都具有相似的传感性能,这反过来表明,酰亚胺位置的取代基对改善per二酰亚胺衍生物气体传感器的性能影响不大。

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