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Synthesis, characterization and electrical properties of N-(4-(aminophenylethynyl)toluene-N’-(cinnamoyl)thiourea (AECT) as single molecular conductive film

机译:单分子导电膜N-(4-(氨基苯基乙炔基)甲苯 -N'-(肉桂酰基)硫脲(AECT)的合成,表征和电性能

摘要

The exploitation of mixed moieties of conjugated acetylide and thiourea system as molecular wire candidates surprisingly unexplored in this distinctive area although the well-known rigid π-systems enhance the electronic field at some extend. Therefore, in the present research, interest has been focused on the design, synthesis, fabrication and evaluation of the performance of a new acetylide-thiourea, N-([4-(aminophenylethynyl)toluene]-N’-(cinnamoyl)thiourea (AECT) based on Donor (D)-π-Acceptor (A) system as an active layer in conductive film. The compounds were successfully characterized via infrared spectroscopy (IR), UV-visible absorption spectroscopy (UV-Vis), CHNS elemental analysis, 1H and 13C nuclear magnetic resonance spectroscopy (NMR), thermogravimetric analysis (TGA) as well as cyclic voltammetry (CV) analysis. The investigation of its potential as dopant system in conductive film was fabricated on ITO substrate prior to the evaluation of its conductivity properties which was carried out by Four Point Probe. The findings from the conductivity analysis showed that the prepared film, AECT/ITO performed better and exhibited increasing conductivity up to 0.2044 Scm-1 under maximum light intensity of 150 Wm-2. This proposed molecular framework gives an ideal indication to act as conductive film and has opened wide potential for application in organic electronic devices.
机译:尽管众所周知的刚性π系统在一定程度上增强了电场,但在这个独特的领域中,未开发出共轭乙炔和硫脲系统的混合部分作为分子线候选物。因此,在本研究中,人们的兴趣集中在新型乙炔基-硫脲N-([[4-(氨基苯基乙炔基)甲苯] -N'-(肉桂酰基)硫脲的设计,合成,制备和性能评估上。以施主(D)-π-受主(A)体系为导电膜中的活性层的AECT),通过红外光谱(IR),紫外可见吸收光谱(UV-Vis),CHNS元素分析对化合物进行了成功表征,1H和13C核磁共振波谱(NMR),热重分析(TGA)以及循环伏安法(CV)分析,在评估导电率之前,先在ITO基板上研究其在导电膜中作为掺杂剂体系的潜力。电导率分析的结果表明,在150 Wm-2的最大光强度下,制备的薄膜AECT / ITO的性能更好,并显示出高达0.2044 Scm-1的电导率。分子框架的构图为充当导电膜提供了理想的指示,并为有机电子设备的应用打开了广阔的前景。

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