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首页> 外文期刊>Synthetic Metals >Synthesis, characterization, and electrical, electrochemical and gas sensing properties of a novel cyclic borazine derivative containing three phthalocyaninato zinc(II) macrocycles
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Synthesis, characterization, and electrical, electrochemical and gas sensing properties of a novel cyclic borazine derivative containing three phthalocyaninato zinc(II) macrocycles

机译:含三个酞菁锌(II)大环的新型环硼嗪衍生物的合成,表征以及电,电化学和气敏特性

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A novel borazine derivative of trinuclear phthalocyanine has been prepared by following the multistep reactions of unsymmetrically substituted phthalocyanines. 4-(4-Amino-3-nitrophenoxy)phthalonitrile (3) which is one of the precursor molecules of the phthalocyanine was obtained from 4-nitrophthalonitrile (1) and 4-amino-3-nitrophenol (2) with K_2CO_3 in DMF at 50 deg C. The zinc(II) phthalocyanine (5) containing an unsymmetrical substituted 4-amino-3-nitrophenoxy group was synthesized by statistical condensation of two different phthalonitriles. 4-(4-Amino-3-nitrophenoxy)phthalonitrile (3) and 4,5-bis(hexylthio)phthalonitrile (4) were cyclotetramerized with zinc acetate in DMF at 170-180 deg C to yield 2-(4-amino-3-nitrophenoxy)-9,10,16,17,23,24-hexa(hexylthio)phthalocyanine zinc(II) complex (5), which was then separated by column chro-matography on silica gel. The unsymmetrically substituted compound was reduced to the diamine form (6) using hydrazine hydrate in the presence of Pd/C catalyst, and the product was purified with chromatographic separation. Compound 6 was then reacted with triisopropoxyborane in reflux-ing xylene to give 5H,12H,19H-tris[2-(3,4-diaminophenoxy)-9,10,16,17,23,24-hexa(hexylthio)phthalocyaninato zinc(II) diazaborolo] borazine (7). The resulting product was purified by column chromatography on silica gel. All the target unsymmetrical phthalocyanines and borazine derivative were characterized by elemental analysis, IR, UV-vis, and ~1H NMR. Boron and zinc(II) percents in 7 were quantified with ICP-MS. Impedance spectroscopy and dc measurements were performed on spin coated 5-7 films as a function of temperature (293-400 K). The dc results showed an activated conductivity dependence on temperature. The ac results gave a temperature dependent frequency exponent s. The results were compared with the prediction of the Quantum Mechanical Tunelling and Con-elated Barrier Hopping models. The ac conductivity of the films was well represented by the formA omega~s. Gas sensing properties of the films for the volatile organic compounds (VOCs) (chloroform, acetone, carbontetrachloride and ammonia) were also investigated in the temperature range from 293 to 400 K. The operating temperature had a considerable effect on sensing characteristics. Maximum sensitivity to VOCs were observed at room temperature for all films. Cyclic voltammetry of compounds 6 and 7 in solution indicated that these compounds have similar voltammetric behaviour.
机译:通过不对称取代的酞菁的多步反应,已经制备了三核酞菁的新型硼嗪衍生物。酞菁的前体分子之一的4-(4-氨基-3-硝基苯氧基)邻苯二甲腈(3)是在DMF中于K_2CO_3下于4-硝基邻苯二甲腈(1)和4-氨基-3-硝基苯酚(2)得到的。通过两个不同的邻苯二甲腈的统计缩合合成了含有不对称取代的4-氨基-3-硝基苯氧基的锌(II)酞菁锌(5)。将4-(4-氨基-3-硝基苯氧基)邻苯二甲腈(3)和4,5-双(己基硫代)邻苯二甲腈(4)与乙酸锌在DMF中在170-180℃下进行环四聚,得到2-(4-氨基- 3-硝基苯氧基)-9,10,16,17,23,24-六(己硫基)酞菁锌(II)配合物(5),然后在硅胶上通过色谱柱分离。在Pd / C催化剂存在下,使用水合肼将不对称取代的化合物还原为二胺形式(6),并通过色谱分离法纯化产物。然后使化合物6与三异丙氧基硼烷在回流的二甲苯中反应,得到5H,12H,19H-三[2-(3,4-二氨基苯氧基)-9,10,16,17,23,24-六(己硫基)邻苯二甲酰氰锌(II)diazaborolo]硼嗪(7)。所得产物通过硅胶柱色谱法纯化。所有目标不对称酞菁和硼嗪衍生物均通过元素分析,IR,UV-vis和〜1H NMR进行了表征。用ICP-MS定量分析了7中的硼和锌(II)百分比。在旋涂5-7薄膜上进行阻抗光谱和直流测量,作为温度的函数(293-400 K)。直流结果表明激活的电导率与温度有关。交流结果给出了温度相关的频率指数s。将结果与量子机械调谐和相关屏障跳跃模型的预测进行了比较。薄膜的交流电导率由ωA形式很好地表示。在293至400 K的温度范围内,还研究了膜对挥发性有机化合物(VOC)(氯仿,丙酮,四氯化碳和氨气)的气敏特性。工作温度对传感特性有很大影响。在室温下,所有薄膜均观察到对VOC的最大敏感性。溶液中化合物6和7的循环伏安法表明,这些化合物具有相似的伏安行为。

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