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◆ Mikrochimica acta2026-09-02

Self-assembled perylene diimide/CuO p-n heterojunction-enhanced photoelectrochemical platform for sensitive dopamine detection.

Chengyao Li, Shumin Zhao, Youqi Duan, Lei Shang, Rongna Ma, Xiaojian Li, Liping Jia, Chuan Li, Guangming Nie, Wei Zhang

原始摘要(英文原文)· Original abstract
The development of a highly efficient photoelectrochemical (PEC) platform for the sensitive and selective detection of dopamine (DA) is of significant importance. In this study, an amine-propyl-functionalized perylene diimide (PA-PDI) self-assembly block material was fabricated and demonstrated a pronounced photoanodic current response under visible-light irradiation at 630 nm. Upon introduction of Cu2+, PA-PDI underwent structural reorganization from nanoflakes into nanobelts, leading to the in situ formation of a PA-PDI/CuO p-n heterojunction. This heterojunction markedly enhanced charge separation efficiency, resulting in a remarkable increase in photocurrent. Notably, the presence of DA triggered a substantial decrease in the photocurrent, which was proposed to arise from the likely formation of polydopamine (PDA) on the surface of PA-PDI/CuO via Cu2+-catalyzed oxidation of DA; the resulting PDA layer was suggested to act as an insulating layer and effective electron acceptor, thereby suppressing interfacial electron transfer within the heterojunction. Leveraging this proposed PEC transduction mechanism, a label-free PEC sensor was developed for the quantitative detection of DA, exhibiting a wide linear range from 10- 2 µM to 102 µM (R2 = 0.998) and a low limit of detection of 5.38 nM (S/N = 3). Furthermore, satisfactory recoveries (96.8-100.6%) were achieved in spiked human serum samples.
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Self-assembled perylene diimide/CuO p-n heterojunction-enhanced photoelectrochemical platform for sensitive dopamine detection. — 科研速览 Science Skim