Giagu Gabriele, Fracassa Alessandro, Fiorani Andrea, Villani Elena, Paolucci Francesco, Valenti Giovanni, Zanut Alessandra
Department of Chemistry Giacomo Ciamician, University of Bologna, via Selmi 2, Bologna, 40126, Italy.
Department of Chemistry, Keio University, 3-14-1 Hiyoshi, Yokohama, 223-8522, Japan.
Mikrochim Acta. 2024 May 31;191(6):359. doi: 10.1007/s00604-024-06413-1.
Electrogenerated chemiluminescence (ECL) stands out as a remarkable phenomenon of light emission at electrodes initiated by electrogenerated species in solution. Characterized by its exceptional sensitivity and minimal background optical signals, ECL finds applications across diverse domains, including biosensing, imaging, and various analytical applications. This review aims to serve as a comprehensive guide to the utilization of ECL in analytical applications. Beginning with a brief exposition on the theory at the basis of ECL generation, we elucidate the diverse systems employed to initiate ECL. Furthermore, we delineate the principal systems utilized for ECL generation in analytical contexts, elucidating both advantages and challenges inherent to their use. Additionally, we provide an overview of different electrode materials and novel ECL-based protocols tailored for analytical purposes, with a specific emphasis on biosensing applications.
电致化学发光(ECL)是溶液中电生物种引发的电极发光的显著现象。ECL具有灵敏度高、背景光信号低的特点,在生物传感、成像及各种分析应用等多个领域都有应用。本综述旨在作为ECL在分析应用中利用的综合指南。首先简要阐述ECL产生的理论基础,然后阐明用于引发ECL的各种体系。此外,我们还描述了分析环境中用于ECL产生的主要体系,阐明其使用所固有的优点和挑战。此外,我们概述了不同的电极材料以及为分析目的量身定制的基于ECL的新型方案,特别强调生物传感应用。