首页> 外文期刊>Inorganica Chimica Acta >Synthesis and characterization, electrical and gas sensing properties of N,N '-bis(salicylidene)-1,2-phenylendiamine substituted novel mono and ball-type metallo phthalocyanines
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Synthesis and characterization, electrical and gas sensing properties of N,N '-bis(salicylidene)-1,2-phenylendiamine substituted novel mono and ball-type metallo phthalocyanines

机译:N,N'-双(水杨基)-1,2-苯二胺取代的新型单和球型金属酞菁的合成,表征,电学和气敏性质

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摘要

The synthesis of 2,2'-{benzene-1,2-diylbis[nitrilo(E) methylidene]} phenol phenoxy phthalonitrile 1 and 2,2'-{benzene-1,2-diylbis[ nitrilo(E) methylidene]} diphenoxy diphthalonitrile 2 were achieved starting from N,N'-bis(salicylidene)-1,2-phenylenediamine, 4-nitrophthalonitrile and anhydrous K2CO3 in DMF at 70 degrees C under argon atmosphere. The template reaction of 1 with the corresponding metal salt gave the mono-nuclear zincphthalocyanine 3. The ball-type metallophthalocyanines 4 and 5 (Zn2Pc2 and LuPc2) were synthesized by starting from compound 2 with the corresponding metal salts heating in the medium without solvent. The compounds were characterized by elemental analysis, FT-IR, UV-Vis, MALDI-TOF mass and H-1 NMR spectroscopy techniques. Thin films of the compounds have been deposited by spin coating method on the glass substrate fitted with interdigitated gold electrodes. Electrical response of the films has been investigated by exposing the samples to various concentrations of SO2 gas. While exposure to SO2 has no influence on the electrical conductivity of compound 3, the conductivity of the films of 4 and 5 and strongly depend on the presence of this gas. Completely reversible sensor signals were obtained for these compounds with response and recovery times shorter than 2 min. and 40 s, respectively. (C) 2015 Elsevier B.V. All rights reserved.
机译:2,2'-{苯-1,2-二苯基双[亚甲基(亚)亚甲基]}苯酚苯氧基邻苯二甲腈1和2,2'-{苯-1,2-二苯基双[亚硝基(E)亚甲基]}的合成在70℃,氩气气氛下,在DMF中,由N,N′-双(水杨亚烷基)-1,2-苯二胺,4-硝基苯二甲腈和无水K 2 CO 3起始获得二苯氧基二邻苯二甲腈2。 1与相应的金属盐的模板反应得到单核锌酞菁3。球形金属酞菁4和5(Zn2Pc2和LuPc2)是从化合物2出发,在无溶剂的介质中加热相应的金属盐而合成的。通过元素分析,FT-IR,UV-Vis,MALDI-TOF质量和H-1 NMR光谱技术对化合物进行表征。化合物的薄膜已经通过旋涂法沉积在装有叉指式金电极的玻璃基板上。通过将样品暴露于各种浓度的SO2气体中,已经研究了薄膜的电响应。尽管暴露于SO2对化合物3的电导率没有影响,但4和5薄膜的电导率很大程度上取决于该气体的存在。对于这些化合物,获得了完全可逆的传感器信号,响应和恢复时间短于2分钟。和40 s。 (C)2015 Elsevier B.V.保留所有权利。

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