Related Experiment Video
Updated: May 17, 2025

Using Extraordinary Optical Transmission to Quantify Cardiac Biomarkers in Human Serum
Published on: December 13, 2017
Development of Zn-Based Tower-like Photoelectrochemical Sensor Array for Sandwich-Type Immunosensing Analysis of Tau
Yaoxiu Zhang1, Yunfei Zhang1, Huan Wang1
1Key Laboratory of Interfacial Reaction & Sensing Analysis in Universities of Shandong, School of Chemistry and Chemical Engineering, Collaborative Innovation Center for Green Chemical Manufacturing and Accurate Detection, University of Jinan, Jinan 250022, P. R. China.
Abstract:
A novel tower-like photoelectrochemical (PEC) sensor array, incorporating a self-calibration strategy, has been developed. In this study, Zn foil was folded into a quadrangular prism, upon which ZnO nanorods were grown in situ via a hydrothermal process. Subsequently, these ZnO nanorods were sensitized with narrow bandgap CdSe nanospheres. The resultant Zn/ZnO/CdSe have a stepped bandgap structure, effectively minimizing electron-hole pair recombination, enhancing electron transfer, and boosting PEC efficiency. The quadrangular structure is partitioned into four layers by light shields, creating a tower-like electrode equipped with 16 detection points. Furthermore, ZnFe2O4 is used as a detection antibody label for signal amplification. By rotating and moving the tower-like electrode, continuous multiple points detections are achieved, which reduces the operation time and helps to minimize the batch-to-batch variability. Additionally, the integration of a self-calibration strategy allows for selecting a point on the working electrode as a reference for calibration, thereby enhancing detection accuracy and sensitivity. In addition, the PEC immunosensor demonstrates a good linear correlation with microtubule-associated protein tau (Tau) within a measurement range of 0.01-50 ng·mL-1, with a detection limit of 1.1 pg·mL-1. This immunosensor is portable, highly stable, repeatable, and has strong specificity, with good storage stability.

