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首页> 外文期刊>Sensors and Actuators >Novel SWCNT-hybrid nanomaterial functionalized with subphthalocyanine substituted asymmetrical zinc (Ⅱ) phthalocyanine conjugate: Design, synthesis, characterization and sensor properties for pesticides
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Novel SWCNT-hybrid nanomaterial functionalized with subphthalocyanine substituted asymmetrical zinc (Ⅱ) phthalocyanine conjugate: Design, synthesis, characterization and sensor properties for pesticides

机译:与亚酞菁取代的不对称锌(Ⅱ)酞菁缀合物的新型SWCNT-杂交纳米材料:农药的设计,合成,表征和传感器性能

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The novel asymmetric zinc (Ⅱ) phthalocyanines containing one ethyloxy azido and three iodine (Iodo-Pc) or subphthalocyanine (SubPc-Pc) groups were designed and synthesized for the first time. These novel phthalocyanines were chemically characterized by common spectral methods such as FT-IR, UV-vis, ~1H-NMR, ~(13)C-NMR and MALDI-TOF mass spectroscopy and elemental analyses as well. Furthermore, a novel hybrid carbon nanomaterial (SWCNT-SubPc-Pc) bearing subphthalocyanine substituted zinc (Ⅱ) phthalocyanine conjugate on the single walled carbon nanotube (SWCNT) surface was also prepared via azide-alkyne Huisgen cycloaddition (click) reaction. This novel hybrid carbon nanomaterial was chemically characterized by UV-vis, FT-IR and Raman spectroscopies. The thermal behaviour of the prepared SWCNT-SubPc-Pc was characterized by ther-mogravimetric analysis. Surface morphologies of the hybrid material were also investigated by scanning and transmission electron microscopies. SWCNT-SubPc-Pc hybrid nanomaterial was successfully modified on glassy carbon electrode (GCE) by using drop cast method. Then, the GCE/SWCNT-SubPe-Pc electrode was tested as pesticide sensor via electrochemical methods. The electrochemical responses were recorded using differential pulse (DPV) and cyclic voltammetries. The modified electrode acted as selectively to methyl parathion among the used pesticides (methyl parathion, acetamiprid and chlorantraniliprole). The electrochemical sensor behaviour exhibited a broad linear range (2.5 nM and 3.75 × 10~(-8) M) and low detection limit (1.78 nM) for methyl parathion. Moreover, high performance liquid chromatography was used to validate the results obtained from orange and cherry juice samples with respect to the DPV results.
机译:含有一种乙氧基叠氮基和三个碘(碘 - PC)或亚酞菁的新的不对称锌(Ⅱ)酞菁(SubPc-PC)基团,设计并首次合成。这些新颖的酞菁进行化学通过共同光谱方法如FT-IR,UV-VIS,〜1H-NMR,〜(13)C-NMR和MALDI-TOF质谱分析和元素分析以及表征。此外,一个新的混合碳纳米材料(SWCNT-SubPc-PC)轴承亚酞菁锌取代也经由叠氮化物 - 炔烃Huisgen环(点击)反应制得(Ⅱ)酞菁缀合物上的单壁碳纳米管(SWCNT)的表面。这种新颖的混合碳纳米材料进行化学通过UV-vis,FT-IR和拉曼光谱表征。所制备的SWCNT的SubPc-Pc的热行为的特征是疗法-mogravimetric分析。该混合材料的表面形貌也通过扫描和透射电子显微术研究。 SWCNT的SubPc-PC混合纳米材料被成功修改通过使用滴流延法玻碳电极(GCE)。然后,GCE / SWCNT的SubPe-PC电极组试验作为通过电化学方法农药传感器。利用差分脉冲(DPV)和环伏安法的电化学反应被记录。该修饰电极充当选择性地甲基对硫磷的农药使用的(甲基对硫磷,啶虫脒和氯虫苯甲酰胺)之间。该电化学传感器的行为表现出广泛的线性范围(2.5nM的和3.75×10〜(-8)M)和甲基对硫磷低检测限(1.78 nM)的。此外,高效液相色谱法用来验证相对于所述DPV结果从橙色和樱桃果汁样品得到的结果。

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