电化学发光
电荷(物理)
化学
分子内力
共价键
林可霉素
组合化学
亚胺
纳米技术
分子
化学物理
共发射极
度量(数据仓库)
电极
光电子学
离子
自由基离子
串联
方向性
循环伏安法
材料科学
作者
Linlin Song,Xiaoran Zou,Lin Cui,Chun‐yang Zhang
出处
期刊:ACS Sensors
[American Chemical Society]
日期:2026-06-15
卷期号:11 (6): 5016-5025
标识
DOI:10.1021/acssensors.6c00973
摘要
Covalent organic frameworks (COFs) have garnered increasing attention in electrochemiluminescence (ECL), but how to improve ECL efficiency is still challenging due to the insufficient charge separation driving forces and non-directional charge transfer. Herein, by rationally modulating the types of building blocks, we synthesize two donor−acceptor (D−A) imine-linked COFs with distinct charge transfer directionality (namely Btt-Tpa-COF and Btt-Tapt-COF). In Btt-Tapt-COF, the D−A orientations of building units align with those of imine bonds (C δ+ =N δ− ), which facilitates the establishment of codirectional charge transfer channels and significantly promotes the intramolecular charge separation/transport for the achievement of exceptional ECL performance. In contrast, Btt-Tpa-COF exhibits the reduced ECL stability and efficiency due to its reversed D−A orientation that impedes the intramolecular charge transfer. As a proof of concept, we construct a target-responsive ECL aptasensor to measure lincomycin (LIN) with Btt-Tapt-COF as an efficient emitter and the three-dimensional DNA hydrogel as an intelligent signal switch. This aptasensor can sensitively measure LIN within a large linear response range of 0.0001−10 ng/mL. Importantly, this research reveals the effect of charge transfer directionality on ECL performance and provides a promising strategy for the construction of efficient ECL sensors to quantify antibiotics in food and the environment.
科研通智能强力驱动
Strongly Powered by AbleSci AI