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Dynamically imaging collision electrochemistry of single electrochemiluminescence nano-emitters

机译:单个电化学发光纳米发射体的动态成像碰撞电化学

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The quest for new techniques to measure single nanomaterials is a great impetus to research efforts to understand individual behaviours. Here, we develop an electrochemiluminescence (ECL) microscopy for visualization of stochastic collision electrochemistry of single nano-emitters without the interference of current and optical background. This design uses a water-immersion objective to capture the ECL emission of nanoparticles near the specular electrode surface for enhancing light collection efficiency. The approach enables us to trace the collision trajectory of multiple nanoparticles and spatially distinguish simultaneous collisions. Results reveal that collision types, frequencies and ECL intensities significantly depend on surface natures, particle concentrations, and diffusion fluxes. By recording successive collisions, we develop a “relay probe” sensing platform for long-term research. This imaging technique displays great potential for applications in single-particle electrochemical and analytical research.
机译:对测量单一纳米材料的新技术的追求,极大地推动了研究工作以了解个体行为。在这里,我们开发了一种电化学发光(ECL)显微镜,用于可视化单个纳米发射体的随机碰撞电化学,而没有电流和光学背景的干扰。此设计使用水浸物镜来捕获镜面电极表面附近纳米粒子的ECL发射,以提高光收集效率。该方法使我们能够追踪多个纳米粒子的碰撞轨迹,并在空间上区分同时发生的碰撞。结果表明,碰撞类型,频率和ECL强度很大程度上取决于表面性质,颗粒浓度和扩散通量。通过记录连续的碰撞,我们开发了“继电器探测器”感测平台进行长期研究。这种成像技术在单颗粒电化学和分析研究中显示出巨大的潜力。

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