Tang Sheng-Han, Qin Ling, Yang Wei-Guo, Yuan Ruo, Yang Jun, Li Yan, Hu Shan-Shan
Key Laboratory of Luminescence Analysis and Molecular Sensing (Southwest University), Ministry of Education, College of Chemistry and Chemical Engineering, Southwest University, Chongqing, 400715, P. R. China.
Analytical & Testing Center, Southwest University, Chongqing, 400715, P. R. China.
Chemistry. 2025 Mar 6;31(14):e202404053. doi: 10.1002/chem.202404053. Epub 2025 Jan 10.
Currently, metal-organic frameworks (MOFs) with tunability and covalent organic frameworks (COFs) with high stability are promising nanomaterials for electrochemiluminescence (ECL), while Ru-based metal covalent organic frameworks (Ru-MCOFs) have rarely been reported. Herein, an ECL immunosensor based on a strong ECL-emitting Ru-MCOF was proposed for the sensitive detection of the cardiac troponin-I (cTnI). Imine-linked Ru-MCOF was prepared as an ECL emitter via solvothermal method using tris (4,4' -diamino-2,2' -bipyridine) ruthenium (II) (Ru(dbpy) ) as a precursor. Compared with monomers, the imine-linked Ru-MCOF achieved structural extension through covalent bonds, which not only effectively facilitated the electrochemical activation of the luminophores, but also shortened the transmission distance between electrons and co-reactants, generating significant ECL emission. In addition, the porous Ru-MCOF provided a microreactor with nanoconfinement effect, which could accelerate the diffusion of co-reactants into the framework and promote the excitation of internal and external ECL emitters, significantly enhancing the ECL intensity. Considering the excellent ECL performance of Ru-MCOF, combined with dual DNAzymes-driven catalytic hairpin amplification, the ECL immunosensor achieved sensitive detection of cTnI with a detection limit as low as 0.42 fg/mL. The proposed highly stable Ru-MCOF raises a new approach for exploring MCOF-based luminophores, highlighting the potential of MCOFs in advanced ECL emitters.
目前,具有可调节性的金属有机框架材料(MOFs)和具有高稳定性的共价有机框架材料(COFs)是用于电化学发光(ECL)的有前景的纳米材料,而基于钌的金属共价有机框架材料(Ru-MCOFs)鲜有报道。在此,提出了一种基于强ECL发射的Ru-MCOF的ECL免疫传感器,用于灵敏检测心肌肌钙蛋白I(cTnI)。以三(4,4'-二氨基-2,2'-联吡啶)钌(II)(Ru(dbpy))为前驱体,通过溶剂热法制备了亚胺连接的Ru-MCOF作为ECL发光体。与单体相比,亚胺连接的Ru-MCOF通过共价键实现了结构扩展,这不仅有效地促进了发光体的电化学活化,还缩短了电子与共反应物之间的传输距离,产生了显著的ECL发射。此外,多孔的Ru-MCOF提供了具有纳米限域效应的微反应器,可加速共反应物向框架内的扩散,促进内部和外部ECL发光体的激发,显著增强ECL强度。考虑到Ru-MCOF优异的ECL性能,结合双脱氧核酶驱动的催化发夹扩增,该ECL免疫传感器实现了对cTnI的灵敏检测,检测限低至0.42 fg/mL。所提出的高度稳定的Ru-MCOF为探索基于MCOF的发光体提出了一种新方法,突出了MCOFs在先进ECL发光体中的潜力。