电化学发光
化学
电极
原位
检出限
纳米技术
线性范围
生物传感器
组合化学
配体(生物化学)
分子
小分子
电化学
分解
作者
Zhiyuan Xu,Taikang Wu,Tianrui Liu,Jun Sun,Jianping Lei
标识
DOI:10.1021/acs.analchem.5c05576
摘要
with the ligand (TCBPA) in the presence of ammonia, enabling rapid synthesis within minutes under a mild environment, thus greatly simplifying the operation processes. Within the periodically ordered framework, the TCBPA molecules were spatially confined, with suppressed nonradiative transitions, thereby generating enhanced ECL signals. Inspired by the rapid formation of Cd-MOF in the presence of ammonia, the in situ generation of MOFs on the electrode was realized through urease-catalyzing decomposition of urea to ammonia, thereby leading to "off-on" ECL emission transiently. Since urease was introduced onto the electrode in the presence of target miRNAs, this target-gated ECL sensing strategy was established with a wide linear detection range from 1.0 fM to 1.0 nM for the thyroid cancer marker miRNA-146b-5p, and a detection limit as low as 0.59 fM, along with concise operation and rapid response. The target-gated generation of MOF emitters not only achieved unprecedented specificity and exceptional signal-to-noise ratio, but also expanded the applications of MOF-based ECL in biosensing.
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