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受霜花启发的铋基柔性传感器用于检测人体汗液中的锌离子。

A rime ice-inspired bismuth-based flexible sensor for zinc ion detection in human perspiration.

机构信息

Department of Electronic Engineering, Kwangwoon University, Seoul, Republic of Korea.

出版信息

Mikrochim Acta. 2021 Feb 23;188(3):97. doi: 10.1007/s00604-021-04752-x.

Abstract

A nature-inspired special structure of bismuth is newly presented as Zn ion sensing layer for high-performance electrochemical heavy metal detection sensor applications. The rime ice-like bismuth (RIBi) has been synthesized using an easy ex situ electrodeposition method on the surface of a flexible graphene-based electrode. The flexible graphene-based electrode was fabricated via simple laser-writing and substrate-transfer techniques. The Zn ion sensing performance of the proposed heavy metal sensor was evaluated by square wave anodic stripping voltammetry after investigating the effects of several parameters, such as preconcentration potential, preconcentration time, and pH of acetate buffer. The proposed RIBi-based heavy metal sensor demonstrated a good linear relationship between concentration and current in the range 100-1600 ppb Zn ions with an acceptable sensitivity of 106 nA/ppb·cm. The result met the requirements in terms of common human perspiration levels (the average Zn ion concentration in perspiration is 800 ppb). In addition, the heavy metal sensor response to Zn ions was successfully performed in human perspiration samples as well, and the results were consistent with those measured by atomic absorption spectroscopy. Besides, the fabricated Zn ion sensor exhibited excellent selectivity, repeatability, and flexibility. Finally, a PANI-LIG-based pH sensor (measurement range: pH 4-7) was also integrated with the Zn ion sensor to form a single chip hybrid sensor. These results may provide a great possibility for the use of the proposed flexible sensor to realize wearable perspiration-based healthcare systems. Graphical abstract.

摘要

一种受自然启发的铋特殊结构被新提出作为 Zn 离子传感层,用于高性能电化学重金属检测传感器应用。采用简单的外原地电沉积方法在柔性基于石墨烯的电极表面上合成了具有冰花状形貌的铋(RIBi)。柔性基于石墨烯的电极通过简单的激光写入和基底转移技术制造。通过研究几个参数(例如预浓缩电位、预浓缩时间和醋酸盐缓冲液的 pH 值),评估了所提出的重金属传感器对 Zn 离子的传感性能。在用方波阳极溶出伏安法进行评估后,所提出的基于 RIBi 的重金属传感器在 100-1600 ppb Zn 离子浓度范围内表现出良好的浓度与电流线性关系,灵敏度为 106 nA/ppb·cm,具有可接受的灵敏度。结果满足常见人体汗液水平(汗液中平均 Zn 离子浓度为 800 ppb)的要求。此外,该重金属传感器在人体汗液样本中对 Zn 离子的响应也得到了成功的检测,并且结果与原子吸收光谱法测量的结果一致。此外,所制造的 Zn 离子传感器还表现出优异的选择性、重复性和柔韧性。最后,还将基于 PANI-LIG 的 pH 传感器(测量范围:pH 4-7)与 Zn 离子传感器集成到单个芯片混合传感器中。这些结果可能为使用所提出的柔性传感器实现基于可穿戴汗液的医疗保健系统提供了很大的可能性。

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