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Bis(2,2'-bipyridine)(5,6-epoxy-5,6-dihydro-[1,10]phenanthroline)ruthenium: Synthesis and Electrochemical and Electrochemiluminescence Characterization

机译:双(2,2'-联吡啶)(5,6-环氧-5,6-二氢-[1,10]菲咯啉)钌:合成及电化学和电化学发光表征

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In this work, an electrochemiluminescence (ECL) reagent bis(2,2'-bipyridine)(5,6-epoxy-5,6-dihydro-[1,10]phenanthroline)ruthenium complex (Ru-1) was synthesized, and its electrochemical and ECL properties were characterized. The synthesis of Ru-1 was confirmed by IR spectra, element analysis, and ~(1)H NMR spectra. For further study, its UV-vis absorption and fluorescence emission spectra were investigated. Ru-1 also exhibited quasi-reversible Ru~(II)/Ru~(III) redox waves in acetonitrile solution. The aqueous ECL behaviors of Ru-1 were also studied in the absence and in the presence of tripropylamine. The complex was fabricated on a gamma-(aminopropyl) triethoxysilane (APTES) pretreated indium tin oxide (ITO) substrate via aminolysis reaction between the 5,6-epoxy-5,6-dihydro-[1,10]phenanthroline ligand and APTES. The resulting Ru-1 modified ITO substrate exhibited a broad absorption band in the visible region (350-600 nm) and its fluorescence emission spectrum was centered at 622 nm. The Ru-1 modified ITO electrode showed relative low ECL response. To improve the solid-state ECL response, a gold nanoparticles (GNP)/Ru-1 modified ITO electrode was constructed. The mixing of GNP and Ru-1 could produce the aggregates, which were further immobilized onto a 3-mercaptopropyltrimethoxy-silane (3-MPTMS) pretreated ITO substrate via Au-S interactions to construct the GNP/Ru-1 modified electrode.
机译:在这项工作中,合成了一种化学发光(ECL)试剂双(2,2'-联吡啶)(5,6-环氧-5,6-二氢-[1,10]菲咯啉)钌络合物(Ru-1),并表征了其电化学和ECL性能。通过IR光谱,元素分析和〜(1)H NMR光谱确认Ru-1的合成。为了进一步研究,研究了其紫外可见吸收和荧光发射光谱。 Ru-1在乙腈溶液中还表现出准可逆的Ru〜(II)/ Ru〜(III)氧化还原波。还研究了在不存在和存在三丙胺的情况下Ru-1的水性ECL行为。通过5,6-环氧-5,6-二氢-[1,10]菲咯啉配体与APTES之间的氨解反应,在γ-(氨基丙基)三乙氧基硅烷(APTES)预处理的铟锡氧化物(ITO)基材上制备该配合物。所得Ru-1改性的ITO基材在可见光区域(350-600nm)表现出较宽的吸收带,并且其荧光发射光谱集中在622nm。 Ru-1修饰的ITO电极表现出相对较低的ECL响应。为了改善固态ECL响应,构建了纳米金(GNP)/ Ru-1修饰的ITO电极。 GNP和Ru-1的混合可以产生聚集体,然后通过Au-S相互作用将聚集体进一步固定在3-巯基丙基三甲氧基硅烷(3-MPTMS)预处理的ITO基板上,以构建GNP / Ru-1修饰电极。

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