Yu Wanqing, Mo Fangjing, Guo Jiang, Yang Yuqin, Jin Yushuang, Fu Yingzi
Key Laboratory of Luminescence Analysis and Molecular Sensing, Ministry of Education, School of Chemistry and Chemical Engineering, Southwest University, Chongqing, 400715, China.
Anal Chem. 2023 Aug 15;95(32):12097-12103. doi: 10.1021/acs.analchem.3c02153. Epub 2023 Aug 2.
Seeking and constructing superior photoactive materials have the potential to improve the performance of photoelectrochemical (PEC) biosensors. In this work, we proposed a novel mimosa-like ternary inorganic composite with a significantly enhanced light-harvesting ability and photogenerated carrier separation rate. This ternary photoactive material was obtained via electrodeposition of gold nanoparticles (Au) on the surface of transition metal sulfide composite of CdS and NiS (CdS-NiS/Au). The experimental results showed that the high initial photocurrent was acquired on CdS-NiS/Au (68-fold higher than that of individual CdS) with the synergistic effect of p-n heterojunction, Schottky junction, and the eminent optical properties of gold nanoparticles. Meanwhile, using silver nanoclusters prepared by link DNA protection as an effective quencher, integrating the duplex-specific nuclease-assisted rolling circle amplification strategy, a "Signal ON" PEC biosensor was fabricated for the detection of microRNA 21 (miRNA 21). With the release of the quencher, the recovered photocurrent is able to achieve determination of miRNA 21 within the range from 10 aM to 1 pM with a detection limit down to 4.6 aM (3σ). Importantly, this work not only provides a superb idea for designing ternary inorganic heteromaterials with exceptional photoactive ability but also allows the detection of other biomarkers by selecting appropriate recognition units.
寻找和构建优异的光活性材料具有提高光电化学(PEC)生物传感器性能的潜力。在这项工作中,我们提出了一种新型的含羞草状三元无机复合材料,其具有显著增强的光捕获能力和光生载流子分离率。这种三元光活性材料是通过在硫化镉和硫化镍的过渡金属硫化物复合材料(CdS-NiS)表面电沉积金纳米颗粒(Au)而获得的(CdS-NiS/Au)。实验结果表明,在CdS-NiS/Au上获得了高初始光电流(比单独的CdS高68倍),这得益于p-n异质结、肖特基结的协同效应以及金纳米颗粒卓越的光学性质。同时,以通过连接DNA保护制备的银纳米簇作为有效的猝灭剂,结合双链特异性核酸酶辅助的滚环扩增策略,构建了一种用于检测微小RNA 21(miRNA 21)的“信号开启”PEC生物传感器。随着猝灭剂的释放,恢复的光电流能够在10 aM至1 pM范围内实现对miRNA 21的测定,检测限低至4.6 aM(3σ)。重要的是,这项工作不仅为设计具有优异光活性能力的三元无机异质材料提供了一个绝佳的思路,还允许通过选择合适的识别单元来检测其他生物标志物。