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Electrochemically Lighting Up Luminophores at Similar Low Triggering Potentials with Mechanistic Insights

机译:用机械洞察力在类似的低触发潜力下电化学照明发光小孔

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摘要

Electrochemiluminescence (ECL) with high electrode compatibility and less electrochemical interference has conventionally been envisioned by lowering the oxidative potential of luminophores and/or screening luminophores with a low oxidative potential. Herein, an alternative was developed by employing the environmental-friendly carbohydrazide as a coreactant, which enabled serial luminophores with oxidativereduction ECL at one similar low triggering potential around 0.55 V versus Ag/AgCl, including Ru(bpy)(3)(2+ )as well as CdTe, CdSe, CuInS2/ZnS, and Au nanocrystals. Because the eight-electron releasing process of carbohydrazide was electrochemically triggered at similar to 0.25 V versus Ag/AgCl, the radicals generated via electrochemical oxidation of carbohydrazide could reduce the luminophores at a much lower potential than those of traditional coreactants. All the luminophore/carbohydrazide systems exhibited one ECL process around 0.55 V, which was about 0.65 V lower than that of a traditional Ru(bpy)(3)(2+)/tri-n-propylamine system (typically around +1.2 V), and even lower than the oxidative potential of some luminophores. The ECL of the luminophore/carbohydrazide system was spectrally close to that of the corresponding luminophore/tri-n-propylamine system; the maximum emission wavelength of the low triggering potential ECL could shift from 540 to 783 nm via the selection of luminophores in this case. The coreactant screening strategy would be a favorable addition to the expected luminophore screening strategy for achieving enhanced ECL performance. This work created an avenue toward a deeper understanding of the ECL mechanism.
机译:通过降低发光体的氧化潜力和具有低氧化潜力,通过降低氧化潜力的氧化潜力和较低的电化学干扰来设想电化学升高和电化学干扰较少的电化学发光(ECL)。在此,通过使用环芳烃酰肼作为固件来开发一种替代方案,其在一个类似的低触发潜力的氧化型ECL与Ag / AgCl,包括ru(BPY)(3)(2+),使串联发光体能够使串联发光体。以及CDTE,CDSE,CUINS2 / ZnS和Au纳米晶体。因为碳水化合物的八电子释放过程类似于类似于0.25V的0.25 V / AgCl,所以通过电化学氧化产生的基团可以在比传统的固件的潜力下降得多的潜力下减少发光体。所有发光体/碳水化合物系统都表现出约0.55V的一个ECL过程,比传统Ru(BPY)(3)/三-N丙胺系统(通常约+1.2V)低约0.65V。 ,甚至低于一些发光体的氧化潜力。发光体/碳水化合物系统的ECL光谱靠近相应的发光体/三丙胺系统的光谱;在这种情况下,低触发电位ECL的最大发射波长可以通过选择发光小孔从540到783nm偏移。取得的筛选策略将是对实现增强的ECL性能的预期发光体筛选策略的良好补充。这项工作旨在更深入地了解ECL机制的大道。

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  • 来源
    《Analytical chemistry》 |2020年第8期|共6页
  • 作者单位

    Shandong Univ Sch Chem &

    Chem Engn Jinan 250100 Peoples R China;

    Shandong Univ Sch Chem &

    Chem Engn Jinan 250100 Peoples R China;

    Shandong Univ Sch Chem &

    Chem Engn Jinan 250100 Peoples R China;

    Shandong Univ Sch Chem &

    Chem Engn Jinan 250100 Peoples R China;

    Shandong Univ Sch Chem &

    Chem Engn Jinan 250100 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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