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将 WO/BiVO 纳米花生长在纤维素纤维上,构建光电化学/比色纸基芯片装置,用于 AFP 的超灵敏检测。

growth of WO/BiVO nanoflowers onto cellulose fibers to construct photoelectrochemical/colorimetric lab-on-paper devices for the ultrasensitive detection of AFP.

机构信息

School of Chemistry and Chemical Engineering, University of Jinan, Jinan 250022, P. R. China.

School of Materials Science and Engineering, Nanyang Technological University, Singapore 639798, Singapore.

出版信息

J Mater Chem B. 2022 Jun 1;10(21):4031-4039. doi: 10.1039/d2tb00297c.

Abstract

In this work, novel dual-mode lab-on-paper devices based on grown WO/BiVO heterojunctions onto cellulose fibers, as signal amplification probes, were successfully fabricated by the integration of photoelectrochemical (PEC)/colorimetric analysis technologies into a paper sensing platform for the ultrasensitive detection of alpha-fetoprotein (AFP). Specifically, to achieve an impressive PEC performance of the lab-on-paper device, the WO/BiVO heterojunction was grown onto the surface of cellulose fibers assisted with Au nanoparticle (Au NP) functionalization for enhancing the conductivity of the working zone of the device. With the target concentration increased, more immune conjugates could be captured by the proposed paper photoelectrode, which could lead to a quantitative decrease in the photocurrent intensity, eventually realizing the accurate PEC signal readout. To meet the requirement of end-user application, a colorimetric signal readout system was designed for the lab-on-paper device based on the color reaction of 3,3'5,5'-tetramethylbenzidine (TMB) oxidized by WO/BiVO nanoflowers in the presence of HO. Noticeably, it is the first time that the WO/BiVO heterojunction is grown onto cellulose fibers, which enhances the sensitivity in view of both their PEC activity and catalytic ability. By controlling the conversion process of hydrophobicity and hydrophilicity on the lab-on-paper device combined with diverse origami methods, the dual-mode PEC/colorimetric signal output for the ultrasensitive AFP detection was realized. Under optimal conditions, the proposed dual-mode lab-on-paper device could enable the sensitive PEC/colorimetric diagnosis of AFP in the linear range of 0.09-100 ng mL and 5-100 ng mL with the limit of detection of 0.03 and 1.47 ng mL, respectively.

摘要

在这项工作中,通过将光电化学(PEC)/比色分析技术集成到纸传感平台中,成功地制造了基于纤维素纤维上生长的 WO/BiVO 异质结的新型双模纸上实验室设备,作为信号放大探针,用于超灵敏检测甲胎蛋白(AFP)。具体来说,为了实现纸上实验室设备令人印象深刻的 PEC 性能,WO/BiVO 异质结在 Au 纳米颗粒(Au NP)功能化的辅助下生长在纤维素纤维的表面上,以增强设备工作区的导电性。随着目标浓度的增加,更多的免疫偶联物可以被提出的纸光电极捕获,这可以导致光电流强度的定量减少,最终实现准确的 PEC 信号读出。为了满足最终用户应用的要求,设计了基于 WO/BiVO 纳米花在 HO 存在下氧化 3,3'5,5'-四甲基联苯胺(TMB)的颜色反应的纸上实验室设备的比色信号读出系统。值得注意的是,这是第一次将 WO/BiVO 异质结生长在纤维素纤维上,这增强了它们的 PEC 活性和催化能力的灵敏度。通过控制纸上实验室设备的疏水性和亲水性的转化过程并结合各种折纸方法,实现了超灵敏 AFP 检测的双模 PEC/比色信号输出。在最佳条件下,所提出的双模纸上实验室设备能够实现 AFP 的灵敏 PEC/比色诊断,线性范围为 0.09-100ng mL 和 5-100ng mL,检测限分别为 0.03 和 1.47ng mL。

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