Chen Jia-Hao, Wang Cheng-Shuang, Li Zheng, Hu Jin, Yu Si-Yuan, Xu Yi-Tong, Lin Peng, Zhao Wei-Wei
School of Materials Science and Engineering, Yancheng Institute of Technology, Yancheng 224051, China.
State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210023, China.
Anal Chem. 2023 Feb 28;95(8):4243-4250. doi: 10.1021/acs.analchem.2c05797. Epub 2023 Feb 17.
Conjugated acetylenic polymers (CAPs) have emerged as a unique class of metal-free semiconductors with tunable electrical and optical properties yet their full potential remains largely unexplored. Organic bioelectronics is envisioned to create more opportunities for innovative biomedical applications. Herein, we report a poly(1,4-diethynylbenzene) (pDEB)/NiO gated enhancement-mode poly(ethylene dioxythiophene)-poly(styrene sulfonate) organic photoelectrochemical transistor (OPECT) and its structural evolution toward bioelectronic detection. pDEB was synthesized via copper-mediated Glaser polycondensation of DEB monomers on the NiO/FTO substrate, and the as-synthesized pDEB/NiO/FTO can efficiently modulate the enhancement-mode device with a high current gain. Linking with a sandwich immunoassay, the labeled alkaline phosphatase can catalyze sodium thiophosphate to generate HS, which will react with the diacetylene group in pDEB through the Michael addition reaction, resulting in an altered molecular structure and thus the transistor response. Exemplified by HIgG as the model target, the developed biosensor achieves highly sensitive detection with a linear range of 70 fg mL-10 ng mL and a low detection limit of 28.5 fg mL. This work features the dual functional CAP-gated OPECT, providing not only a novel gating module but also a structurally new rationale for bioelectronic detection.
共轭炔聚合物(CAPs)已成为一类独特的无金属半导体,具有可调节的电学和光学性质,但其全部潜力在很大程度上仍未得到探索。有机生物电子学有望为创新的生物医学应用创造更多机会。在此,我们报道了一种聚(1,4 - 二乙炔基苯)(pDEB)/ NiO栅极增强型聚(乙烯二氧噻吩)- 聚(苯乙烯磺酸盐)有机光电化学晶体管(OPECT)及其向生物电子检测的结构演变。通过DEB单体在NiO / FTO基板上的铜介导Glaser缩聚反应合成了pDEB,合成的pDEB / NiO / FTO能够以高电流增益有效地调制增强型器件。与夹心免疫分析相结合,标记的碱性磷酸酶可催化硫代磷酸钠生成HS,HS将通过迈克尔加成反应与pDEB中的二乙炔基反应,导致分子结构改变,从而引起晶体管响应。以HIgG作为模型靶标为例,所开发的生物传感器实现了高灵敏度检测,线性范围为70 fg mL - 10 ng mL,检测下限为28.5 fg mL。这项工作的特点是双功能CAP栅极OPECT,不仅提供了一种新颖的栅极模块,还为生物电子检测提供了一种结构上新的原理。