MXenes公司
材料科学
纳米技术
生物传感器
制作
电极
共形矩阵
生物相容性
标度系数
光电子学
复合材料
化学
物理化学
病理
医学
替代医学
冶金
作者
Abdulelah Saleh,Shofarul Wustoni,Eloïse Bihar,Jehad K. El‐Demellawi,Yizhou Zhang,Adel Hama,Victor Druet,Arief Yudhanto,Gilles Lubineau,Husam N. Alshareef,Sahika Inal
出处
期刊:JPhys materials
[IOP Publishing]
日期:2020-08-28
卷期号:3 (4): 044004-044004
被引量:37
标识
DOI:10.1088/2515-7639/abb361
摘要
Abstract Among the existing two-dimensional materials, MXenes, i.e. transition metal carbides, nitrides and/or carbonitrides, stand out for their excellent electrochemical properties. Due to their high charge storage capacity, metal-like conductivity, biocompatibility as well as hydrophilicity, Ti 3 C 2 T x MXene-based inks hold great potential for scalable production of skin conformable electronics via direct printing methods. Herein, we develop an aqueous MXene ink and inkjet-print MXene films on freestanding, flexible, and conducting polymer-based substrates. These skin-adherent MXene electrodes detect electrocardiography signals with high signal-to-noise ratio while exhibiting preserved electrical performance after 1000 cycles of bending with a 50 d long shelf life in ambient conditions. We show that printed MXene films can be further functionalized to perform as multifunctional biosensing units. When integrated with a sodium (Na + ) ion selective membrane, MXene electrodes detect Na + in artificial sweat with a sensitivity of 40 mV per decade. When the films are functionalized with antibodies, they generate an electrical signal in response to a pro-inflammatory cytokine protein (interferon gamma) with a sensitivity of 3.9 mV per decade. Our findings demonstrate how inkjet-printed MXene films simplify the fabrication of next-generation wearable electronic platforms that comprise multimodal sensors.
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