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A competitive-type photoelectrochemical (PEC) aptasensor coupled with a novel Au@Cd:SnO/SnS nanocomposite was designed for the detection of 17β-estradiol (E2) in microfluidic devices. The designed Au@Cd:SnO/SnS nanocomposites exhibit high photoelectrochemical activity owing to the good matching of cascade band-edge and the efficient separation of photo-generated e/h pairs derived from the Cd-doped defects in the energy level. The Au@Cd:SnO/SnS nanocomposites were loaded into carbon paste electrodes (CPEs) to immobilize complementary DNA (cDNA) and estradiol aptamer probe DNA (E2-Apt), forming a double-strand DNA structure on the CPE surface. As the target E2 interacts with the double-strand DNA, E2-Apt is sensitively released from the CPE, subsequently increasing the photocurrent intensity due to the reduced steric hindrance of the electrode surface. The competitive-type sensing mechanism, combined with high PEC activity of the Au@Cd:SnO/SnS nanocomposites, contributed to the rapid and sensitive detection of E2 in a "signal on" manner. Under the optimized conditions, the PEC aptasensor exhibited a linear range from 1.0 × 10 mol L to 3.2 × 10 mol L and a detection limit of 1.2 × 10 mol L (S/N = 3). Moreover, the integration of microfluidic device with smartphone controlled portable electrochemical workstation enables the on-site detection of E2. The small sample volume (10 µL) and short analysis time (40 min) demonstrated the great potential of this strategy for E2 detection in rat serum and river water. With these advantages, the PEC aptasensor can be utilized for point-of-care testing (POCT) in both clinical and environmental applications.
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http://dx.doi.org/10.1007/s00604-024-06478-y | DOI Listing |
Talanta
August 2025
School of Chemistry and Chemical Engineering, Guangdong Provincial Key Laboratory of Optoelectronic Materials and Sensor Components, School of Economics and Statistics, Guangzhou Key Laboratory of Sensing Materials & Devices, Centre for Advanced Analytical Science, Guangzhou University, Guangzhou, 5
Tetracycline (TC) is a common antibiotic with broad antibacterial activity, yet its excessive abuse will leave antibiotic residues in animal-derived food, posing some threats to human health. Therefore, developing a simple and effective technology for TC trace analysis is immediately important for food safety. Herein, the sensitive PEC aptasensor within Z-scheme heterojunction, based on Bi/BiMoO and P-doped ultrathin porous g-CN (PCN), was constructed by elemental doping strategy, hydrothermal method and surface plasmon resonance (SPR) effect.
View Article and Find Full Text PDFAnal Chem
September 2025
Key Laboratory of Chemical Sensing & Analysis in Universities of Shandong, School of Chemistry and Chemical Engineering, University of Jinan, Jinan 250022, P. R. China.
Long-term intake of fumonisin B1 (FB1) can pose a threat to human health. It is essential to develop an accurate and sensitive method to detect FB1. In this work, a photoelectrochemical-fluorescence (PEC-FL) dual-mode aptamer sensing platform was proposed for FB1 analysis.
View Article and Find Full Text PDFJ Colloid Interface Sci
August 2025
Department of General Surgery, Hui Ya Hospital of The First Affiliated Hospital, Sun Yat-Sen University, Huizhou, Guangdong 516081, China. Electronic address:
Sulfadimethoxine (SDM) is an antibiotic used in treating bacterial infections, but it poses health risks if it enters human body through food chains. In this study, a grain-boundary-rich high-entropy selenide (CdCoCuMnZn)Se was prepared by a one-pot solvothermal strategy. Its microstructure, photoactivity and photostability were investigated using various techniques, whose dynamic mechanism was elucidated and the role of elemental doping in enhancing photoelectrochemical (PEC) performance was rigorously evaluated in control groups.
View Article and Find Full Text PDFTalanta
August 2025
School of Life Sciences and Medicine, Shandong University of Technology, Zibo, 255000, PR China. Electronic address:
Patulin (PAT), a potent mycotoxin commonly found in fruit and vegetable products, represents a critical threat to food safety and public health. Its cytotoxicity arises from the disruption of intracellular signaling pathways and oxidative balance, leading to gastrointestinal impairment, immune suppression, and systemic toxicity. To mitigate these risks, we present a label-free photoelectrochemical (PEC) aptasensor for ultrasensitive PAT detection, employing an in situ-synthesized AgS quantum dot (QD)-sensitized BiOI/BiO heterojunction.
View Article and Find Full Text PDFBiosensors (Basel)
July 2025
State Key Laboratory of Transducer Technology, Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences, Shanghai 200050, China.
A novel nanomaterial photoelectrochemical aptamer sensor based on CdS@NiMoS heterojunction nanocomposites was constructed for highly sensitive detection of chloramphenicol (CAP) in antibiotic residues. Through optimization of the material synthesis process, the optimal doping ratio of MoS to Ni (70% MoS and 10% Ni) was identified, which significantly enhanced the photogenerated carrier separation efficiency. In thin-film preparation, comparative analysis of four film-forming methods led to the determination of an optimal process with stability.
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