Bergama Vocational School, Dokuz Eylul University, Izmir, Turkey.
Maçka Vocational School, Karadeniz Technical University, Turkey.
Talanta. 2018 Jul 1;184:452-460. doi: 10.1016/j.talanta.2018.03.029. Epub 2018 Mar 15.
This work reports the synthesis of new symmetrically substituted manganese(III) phthalocyanine (2eOHMnPc) (2) containing tetra 5-chloroquinolin-8-yloxy group at the peripheral position for the first time. Manganese(III) phthalocyanine (2) was synthesized by cyclotetramerization of 4-(5-chloroquinolin-8-yloxy)phthalonitrile (1) in the presence of corresponding metal salt (manganese(II) chloride). This peripherally substituted phthalocyanine complex (2) was purified by column chromatography and characterized by several techniques such as IR, mass and UV-Visible spectral data. This novel synthesized phthalocyanine was mixed with multiwalled carbon nanotubes in order to prepare the novel catalytic surface on glassy carbon electrode for theophylline and caffeine detection in acidic medium. The novel composite electrode surfaces were characterized by scanning electron microscopy and electrochemical impedance spectroscopy. Individual and simultaneous determination of theophylline and caffeine were studied by differential pulse voltammetry. The detection limits were individually calculated for theophylline and caffeine as 6.6 × 10 M and 5.0 × 10 M, respectively. In simultaneous determination, LODs were calculated for theophylline and caffeine as 8.1 × 10 M and 3.0 × 10 M, respectively. The practical applicability of the proposed modified electrode was tested for the determination of theophylline and caffeine in green tea, cola and theophylline serum.
这项工作首次报道了新的对称取代的锰(III)酞菁(2eOHMnPc)(2)的合成,该酞菁在其外围位置含有四个 5-氯-8-喹啉氧基基团。锰(III)酞菁(2)是通过 4-(5-氯-8-喹啉氧基)邻苯二甲腈(1)在相应金属盐(氯化锰(II))存在下的环四聚化合成的。这种外围取代的酞菁配合物(2)通过柱色谱法进行纯化,并通过红外光谱、质谱和紫外可见光谱数据等多种技术进行表征。这种新合成的酞菁与多壁碳纳米管混合,以便在玻璃碳电极上制备用于酸性介质中茶碱和咖啡因检测的新型催化表面。通过扫描电子显微镜和电化学阻抗谱对新型复合电极表面进行了表征。通过差分脉冲伏安法研究了茶碱和咖啡因的单独和同时测定。茶碱和咖啡因的检测限分别计算为 6.6×10 M 和 5.0×10 M。在同时测定中,茶碱和咖啡因的检测限分别计算为 8.1×10 M 和 3.0×10 M。该修饰电极的实际应用适用性通过测定绿茶、可乐和茶碱血清中的茶碱和咖啡因进行了测试。