<p>The&#xa0;self-supporting material Zn<sub>3</sub>Cu<sub>2</sub>O<sub>2</sub> was synthesized through the methods of electrospinning combined with high-temperature calcination. A novel sensitive electrochemiluminescence (ECL) sensor based on Zn<sub>3</sub>Cu<sub>2</sub>O<sub>2</sub> and CdTe@MWNTs was constructed by the multi-step amplification strategy. First, Zn<sub>3</sub>Cu<sub>2</sub>O<sub>2</sub> and CdTe served as the ECL groups to construct the sensor, yielding a&#xa0;larger signal of the sensor in the presence of the co-reactant K<sub>2</sub>S<sub>2</sub>O<sub>8</sub>. Multi-walled carbon nanotubes (MWNTs) were introduced as a carrier to increase the signal value of the sensor further. The synergistic action of CdTe@MWNTs and Zn<sub>3</sub>Cu<sub>2</sub>O<sub>2</sub> made the system obtain the maximum initial signal. With the addition of Allure Red (AR), the ECL signal decreased. The quenching phenomenon was not only due to the large organic molecule AR occupying the active sites of Zn<sub>3</sub>Cu<sub>2</sub>O<sub>2</sub> and CdTe, but also, more importantly, because the sensor existed as an ECL-RET mechanism between CdTe and AR. The response mechanism and experimental conditions of the system were also investigated. Under optimal conditions, the sensor showed a linear relationship between the ECL signal change and the logarithm of AR concentration in the range 1.0 × 10<sup>−14</sup> to 1.0 × 10<sup>−6</sup>&#xa0;mol L<sup>−1</sup>, the linear equation was ∆<i>I</i> = 15,295.54 + 956.42 log C<sub>AR</sub>, and the correlation coefficient was 0.9928. The lowest detection limit of (<i>S</i>/<i>N</i> = 3) was 1.67 × 10<sup>−15</sup>&#xa0;mol L<sup>−1</sup>. Satisfactory results were obtained for the analysis&#xa0; of beverages.</p> Graphical Abstract <p></p>

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Electrochemical luminescence sensor for the detection of Allure Red: double luminescence cooperative amplification strategy of self-supporting material Zn3Cu2O2 and CdTe@MWNTs

  • Ruidan Li,
  • Li Tian,
  • Yujia Song,
  • Yanjia Guo,
  • Guangping Ma,
  • Pengfei Han,
  • Hanyue Jiang,
  • Wenzhuo Wang,
  • Juan Lu

摘要

The self-supporting material Zn3Cu2O2 was synthesized through the methods of electrospinning combined with high-temperature calcination. A novel sensitive electrochemiluminescence (ECL) sensor based on Zn3Cu2O2 and CdTe@MWNTs was constructed by the multi-step amplification strategy. First, Zn3Cu2O2 and CdTe served as the ECL groups to construct the sensor, yielding a larger signal of the sensor in the presence of the co-reactant K2S2O8. Multi-walled carbon nanotubes (MWNTs) were introduced as a carrier to increase the signal value of the sensor further. The synergistic action of CdTe@MWNTs and Zn3Cu2O2 made the system obtain the maximum initial signal. With the addition of Allure Red (AR), the ECL signal decreased. The quenching phenomenon was not only due to the large organic molecule AR occupying the active sites of Zn3Cu2O2 and CdTe, but also, more importantly, because the sensor existed as an ECL-RET mechanism between CdTe and AR. The response mechanism and experimental conditions of the system were also investigated. Under optimal conditions, the sensor showed a linear relationship between the ECL signal change and the logarithm of AR concentration in the range 1.0 × 10−14 to 1.0 × 10−6 mol L−1, the linear equation was ∆I = 15,295.54 + 956.42 log CAR, and the correlation coefficient was 0.9928. The lowest detection limit of (S/N = 3) was 1.67 × 10−15 mol L−1. Satisfactory results were obtained for the analysis  of beverages.

Graphical Abstract