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基于聚硫堇修饰的MXene的双金属MOF协同分子印迹比率电化学传感器用于儿茶酚的超灵敏检测。

Bimetallic MOF synergy molecularly imprinted ratiometric electrochemical sensor based on MXene decorated with polythionine for ultra-sensitive sensing of catechol.

作者信息

Lu Zhiwei, Wei Kai, Ma Hao, Duan Rongtao, Sun Mengmeng, Zou Ping, Yin Jiajian, Wang Xianxiang, Wang Yanying, Wu Chun, Su Gehong, Wu Mingjun, Zhou Xinguang, Ye Jianshan, Rao Hanbing

机构信息

College of Science, Sichuan Agricultural University, Xin Kang Road, Yucheng District, Ya'an, 625014, PR China; Key Laboratory of Pulp and Paper Science & Technology of Ministry of Education, Qilu University of Technology (Shandong Academy of Sciences), Jinan, 250353, PR China.

College of Science, Sichuan Agricultural University, Xin Kang Road, Yucheng District, Ya'an, 625014, PR China.

出版信息

Anal Chim Acta. 2023 Apr 22;1251:340983. doi: 10.1016/j.aca.2023.340983. Epub 2023 Feb 21.

Abstract

Dual-signal ratiometric molecularly imprinted polymer (MIP) electrochemical sensors with bimetallic active sites and high-efficiency catalytic activity were fabricated for the sensing of catechol (CC) with high selectivity and sensitivity. The amino-functionalization bimetallic organic framework materials (Fe@Ti-MOF-NH), coupled with two-dimensional layered titanium carbide (MXene) co-modified glassy carbon electrode provides an expanded surface while amplifying the output signal through the electropolymerization immobilization of polythionine (pTHi) and MIP. The oxidation of CC and pTHi were presented as the response signal and the internal reference signal. The oxidation peak current at +0.42 V rose with increased concentration of CC, while the peak currents of pTHi at -0.20 V remained constant. Compared to the common single-signal sensing system, this one (MIP/pTHi/MXene/Fe@Ti-MOF-NH/GCE), a novel ratiometric MIP electrochemical sensor exhibited two segments wide dynamic range of 1.0-300 μM (R = 0.9924) and 300-4000 μM (R = 0.9912), as well as an ultralow detection limit of 0.54 μM (S/N = 3). Due to the specific recognition function of MIPs and the advantages of built-in correction of pTHi, the prepared surface imprinting sensor presented an excellent performance in selectivity and reproducibility. Besides, this sensor possessed superior anti-interference ability with ions and biomolecules, excellent reproducibility, repeatability, and acceptable stability. Furthermore, the proposed sensing system exhibits high specific recognition in the determination of environmental matrices and biological fluids in real samples with satisfactory results. Therefore, this signal-enhanced ratiometric MIP electrochemical sensing strategy can accurately and selectively analyze and detect other substances.

摘要

制备了具有双金属活性位点和高效催化活性的双信号比率型分子印迹聚合物(MIP)电化学传感器,用于高选择性和高灵敏度地检测儿茶酚(CC)。氨基功能化双金属有机框架材料(Fe@Ti-MOF-NH)与二维层状碳化钛(MXene)共同修饰玻碳电极,在通过聚噻吩(pTHi)和MIP的电聚合固定放大输出信号的同时,提供了更大的表面积。CC和pTHi的氧化分别作为响应信号和内参信号。+0.42 V处的氧化峰电流随CC浓度增加而升高,而-0.20 V处pTHi的峰电流保持恒定。与常见的单信号传感系统相比,这种新型比率型MIP电化学传感器(MIP/pTHi/MXene/Fe@Ti-MOF-NH/GCE)具有1.0 - 300 μM(R = 0.9924)和300 - 4000 μM(R = 0.9912)的两个宽动态范围,以及0.54 μM的超低检测限(S/N = 3)。由于MIPs的特异性识别功能和pTHi的内置校正优势,所制备的表面印迹传感器在选择性和重现性方面表现优异。此外,该传感器对离子和生物分子具有优异的抗干扰能力、出色的重现性、重复性和可接受的稳定性。此外,所提出的传感系统在实际样品的环境基质和生物流体测定中表现出高特异性识别,结果令人满意。因此,这种信号增强的比率型MIP电化学传感策略能够准确、选择性地分析和检测其他物质。

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