Portable self-powered electrochemical aptasensor for ultrasensitive and real-time detection of microcystin-RR based on hydrovoltaic-photothermal coupling effect.

IF 10.7 1区 生物学 Q1 BIOPHYSICS
Yuqing Bian, Ding Jiang, Xiaojiao Du, Ying Wang, Xueling Shan, Wenchang Wang, Hiroshi Shiigi, Zhidong Chen
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Abstract

Coupling different energy harvesting technologies to obtain an excellent output signal is essential for the development of high-performance self-powered electrochemical sensors. Herein, a novel hydrovoltaic-photothermal coupling self-powered electrochemical aptasensing platform was designed for sensitive detection of microcystin (MC-RR) with a digital multimeter as a direct visual readout strategy. The straightforward ultrasonic method was employed to synthesize polyaniline (PANI) and bismuth oxybromide (BiOBr) nanosheets, which were then integrated as active components in a hydrovoltaic device. The unique layer structure of two-dimensional (2D) nanomaterials BiOBr can create flexible interlayer spaces to accommodate various ions and water molecules, which was beneficial to construct evaporation-driven channels. Meanwhile, the exceptional photothermal characteristics of polyaniline could accelerate the water evaporation rate, consequently boosting the migration speed of charge carriers and increasing output signal. Moreover, a digital multimeter was connected to the constructed sensor for real-time displaying the output signal. With the assistance of aptamer, a novel self-powered electrochemical aptasensing platform was constructed for sensitive detection of MC-RR. Under optimum conditions, the output signal of the hydrovoltaic-photothermal coupling cell was linearly related to the logarithm of MC-RR concentration in the range of 1 fM to 1 nM with a detection limit of 0.31 fM (S/N = 3). Furthermore, this sensor also exhibited many advantages such as high selectivity, good repeatability and portability. Such novel strategy not only offers a completely new general approach to construct high-performance self-powered devices for the detection of MC-RR, but also provides a new strategy for advancing the miniaturization and field application of self-powered electrochemical sensors.

基于氢伏特-光热耦合效应的超灵敏、实时检测微囊藻毒素-RR 的便携式自供电电化学适体传感器。
耦合不同的能量采集技术以获得出色的输出信号对于开发高性能自供电电化学传感器至关重要。本文设计了一种新型的水伏特-光热耦合自供电电化学传感平台,用于灵敏检测微囊藻毒素(MC-RR),并采用数字万用表作为直接视觉读数策略。该研究采用简单的超声波方法合成了聚苯胺(PANI)和氧溴化铋(BiOBr)纳米片,然后将其作为活性元件集成到水伏特装置中。二维(2D)纳米材料 BiOBr 的独特层状结构可创造出灵活的层间空间,以容纳各种离子和水分子,这有利于构建蒸发驱动通道。同时,聚苯胺优异的光热特性可以加快水的蒸发速度,从而提高电荷载流子的迁移速度,增加输出信号。此外,还将数字万用表连接到构建的传感器上,以实时显示输出信号。在适配体的辅助下,一种新型的自供电电化学适配传感平台被构建出来,用于灵敏检测 MC-RR。在最佳条件下,水伏特-光热耦合池的输出信号与 MC-RR 浓度的对数在 1 fM 至 1 nM 范围内呈线性关系,检测限为 0.31 fM(信噪比为 3)。此外,这种传感器还具有选择性高、重复性好和便携性强等诸多优点。这种新策略不仅为构建用于检测 MC-RR 的高性能自供电器件提供了一种全新的通用方法,而且为推进自供电电化学传感器的微型化和现场应用提供了一种新策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biosensors and Bioelectronics
Biosensors and Bioelectronics 工程技术-电化学
CiteScore
20.80
自引率
7.10%
发文量
1006
审稿时长
29 days
期刊介绍: Biosensors & Bioelectronics, along with its open access companion journal Biosensors & Bioelectronics: X, is the leading international publication in the field of biosensors and bioelectronics. It covers research, design, development, and application of biosensors, which are analytical devices incorporating biological materials with physicochemical transducers. These devices, including sensors, DNA chips, electronic noses, and lab-on-a-chip, produce digital signals proportional to specific analytes. Examples include immunosensors and enzyme-based biosensors, applied in various fields such as medicine, environmental monitoring, and food industry. The journal also focuses on molecular and supramolecular structures for enhancing device performance.
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