首页> 外文期刊>Dyes and Pigments >Synthesis, characterization and ethanol sensing properties of peripheral and non-peripheral tetrakis-(3,6-dihexyl-7-oxy-4-methylcoumarin)substituted zinc(II), cobalt(II), and copper(II) phthalocyanines
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Synthesis, characterization and ethanol sensing properties of peripheral and non-peripheral tetrakis-(3,6-dihexyl-7-oxy-4-methylcoumarin)substituted zinc(II), cobalt(II), and copper(II) phthalocyanines

机译:外周和非外周四 - (3,6-二己基-7-氧-4-甲基豆素)取代锌(II),钴(II)和铜(II)酞菁的合成,表征和乙醇感测性能

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摘要

Phthalocyanines bearing coumarin moiety may exhibit interesting properties and also can soluble in organic solvents, easily. In this work, the phthalocyanine compounds bearing tetra-(3,6-dihexyl-7-oxy-4-methylcoumarin) units were synthesized and characterized. Firstly, the starting coumarin compound was synthesized by Pechmann condensation and then phthalonitrile compounds were synthesized by nucleofilic aromatic substitution. Phthalocyanine compounds were synthesized by cyclotetramerization of phthalonitriles. These compounds were characterized by spectroscopic methods such as FT-IR, H-1 NMR, C-13 NMR, electronic absorption spectra, MALDI-TOF mass and elemental analyses as well. The effect of the structure (position of substitution, central metal atom, etc.) of phthalocyanines on electronic absorption spectra and aggregation behavior was also investigated in this paper. In another set of experiments, the effects of the position of methylcoumarin substituent on ethanol vapor sensing performance of the synthesized compounds were investigated and discussed. The observed sensitivities of peripheral and non-peripheral substituted phthalcyanine films are different in spite of their similar bond numbers, indicating significant role of position of the substituent in interaction mechanism. According to the results, the peripheral substituted Pc based sensor not only had high sensitivity towards ethanol vapor, but exhibited very short response time and recovery times. When the concentration of ethanol reached 250 ppm, sensitivity and the response time of peripheral substituted CoPc reached 1.1 x 10(-2) ppm(-1) which was two-fold that than of non-peripheral substitueted CoPc. While peripheral substituted CoPc based sensor shows a response time of 70 s towards 250 ppm concentration of ethanol vapor, the response time of the non-peripheral substitueted CoPc based sensor was about 270 s. As a result, the presented peripheral methyl coumarin substituted compounds are good candidates for ethanol sensing applications.
机译:轴承香豆素部分的酞菁可以表现出有趣的性质,并且还可以易溶于有机溶剂。在这项工作中,合成并表征了携带四(3,6-二己-7-氧-4-甲基豆素)单元的酞菁化合物。首先,通过Pechmann缩合合成起始香豆素化合物,然后通过核芳族芳族取代合成酞氯腈化合物。通过酞氢腈的循环四胺合成酞菁化合物。这些化合物的特征在于光谱法,如FT-IR,H-1 NMR,C-13 NMR,电子吸收光谱,MALDI-TOF质量和元素分析。本文还研究了酞菁对酞菁对电子吸收光谱和聚集行为的影响的结构(取代位置,中央金属原子等)。在另一组实验中,研究了甲基豆素比取代基位置对合成化合物的乙醇蒸汽感测性能的影响。尽管它们的相似粘合数,但是,尽管它们的相互作用机理中的位置具有显着作用,但仍然存在外周和非外周取代的酞菁膜的敏感性。根据结果​​,外周取代的基于PC的传感器不仅对乙醇蒸气的敏感性高,而且表现出非常短的响应时间和恢复时间。当乙醇浓度达到250ppm时,敏感性和外周取代COPC的响应时间达到1.1×10( - 2)ppm(-1),其比非外周替代的COPC为2倍。虽然外周取代的COPC基于COPC的传感器显示出70s达到250ppm浓度的乙醇蒸气的响应时间,但非外周替代COPC的传感器的响应时间约为270s。结果,所提出的外周甲基香豆素取代的化合物是乙醇传感应用的良好候选。

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