Zhang Shipeng, Zahed Md Abu, Sharifuzzaman Md, Yoon Sanghyuk, Hui Xue, Chandra Barman Sharat, Sharma Sudeep, Yoon Hyo Sang, Park Chani, Park Jae Yeong
Department of Electronic Engineering, Kwangwoon University, 447-1 Wolgye-dong, Nowongu, Seoul, 01897, Republic of Korea.
Department of Electronic Engineering, Kwangwoon University, 447-1 Wolgye-dong, Nowongu, Seoul, 01897, Republic of Korea.
Biosens Bioelectron. 2021 Mar 1;175:112844. doi: 10.1016/j.bios.2020.112844. Epub 2020 Nov 22.
In this study, an ultra-high sensitive, flexible, wireless, battery-free, and fully integrated (no external analysis equipment) electrochemical sensing patch system, including a microfluidic-sweat collecting unit, was newly developed for the on-site monitoring of the [K] concentration in human sweat. Multiwalled carbon nanotube (MWCNT) and MXene-TiCT based hybrid multi-dimensional networks were applied to obtain a high surface activation area and faster charge transfer rate, strongly adsorbing the valinomycin membrane to protect the ionophore for effective transshipment and immobilization of the [K]. Furthermore, the controllable porosity of carbon-based materials can accelerate the kinetic process of ion diffusion. This hybrid nanonetwork structure effectively enhanced electrochemical stability and sensitivity, addressing the noise and signal drifting problems experienced with low concentration detection. The fabricated sensor exhibited a high ion concentration sensitivity of 63 mV/dec with excellent selectivity, amplified to 173 mV/dec with the integrated amplification system. The Near Field Communication (NFC) is used to transmit measurements to a smartphone wirelessly. A microfluidic channel was integrated with the electrochemical sensor patch to efficiently collect sweat on the human skin surface and mitigate the sensor surface contamination problem. Furthermore, the developed sensing patch can also be applied to other biomarkers on-site detection after modifying the working electrode with the corresponding selective membranes.
在本研究中,一种超高灵敏度、柔性、无线、无电池且完全集成(无需外部分析设备)的电化学传感贴片系统被新开发出来,用于现场监测人体汗液中的[K]浓度,该系统包括一个微流控汗液收集单元。基于多壁碳纳米管(MWCNT)和MXene-TiCT的混合多维网络被用于获得高表面活化面积和更快的电荷转移速率,强烈吸附缬氨霉素膜以保护离子载体,从而有效地转运和固定[K]。此外,碳基材料的可控孔隙率可以加速离子扩散的动力学过程。这种混合纳米网络结构有效地增强了电化学稳定性和灵敏度,解决了低浓度检测中遇到的噪声和信号漂移问题。所制备的传感器表现出63 mV/dec的高离子浓度灵敏度和优异的选择性,通过集成放大系统可放大至173 mV/dec。近场通信(NFC)用于将测量结果无线传输到智能手机。一个微流控通道与电化学传感器贴片集成在一起,以有效地收集人体皮肤表面的汗液,并减轻传感器表面污染问题。此外,在将工作电极用相应的选择性膜修饰后,所开发的传感贴片还可应用于其他生物标志物的现场检测。