Chapter 2. Energetic and Kinetic Aspects of ECL Generation

A. Kapturkiewicz
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Abstract

Strongly exergonic electron transfer annihilation processes between electrochemically generated oxidant D+ and reductant A− are able to produce electronically excited *D and/or *A species. Depending on the energy released in the A−+D+ reaction, the excited triplet states (3*D or 3*A) as well as the excited singlet states, (1*D or 1*A) can be populated. An intrinsic electron transfer step within [A−⋯D+] pair is additionally preceded/followed by diffusion of reactants/products from/into the bulk solutions as well as associated with spin up-conversion processes between different spin forms of an activated complex 1[A−⋯D+] and 3[A−⋯D+]. All of these processes are implementable in the mechanistic description of the ECL phenomena with formulation of the ECL excitation schemes. The presented qualitative as well quantitative discussion of the resulting schemes may allow deeper insight into mechanisms and efficiencies of the ECL excitation.
第二章。ECL产生的能量和动力学方面
电化学生成的氧化剂D+和还原剂A -之间的强火能电子转移湮灭过程能够产生电子激发的*D和/或*A物质。根据A−+D+反应释放的能量,可以填充激发态(3*D或3*A)和激发态(1*D或1*A)。在[A−⋯D+]对内的本征电子转移步骤之前/之后还有反应物/产物从/进入体溶液的扩散,以及与活化配合物1[A−⋯D+]和3[A−⋯D+]的不同自旋形式之间的自旋向上转换过程相关。所有这些过程都可以通过制定ECL激励方案来实现ECL现象的机制描述。所提出的定性和定量讨论所产生的方案可能允许更深入地了解ECL激励的机制和效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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