首页> 中文期刊> 《安徽地质》 >Highly Concentrated,Conductive,Defect-free Graphene Ink for Screen-Printed Sensor Application

Highly Concentrated,Conductive,Defect-free Graphene Ink for Screen-Printed Sensor Application

         

摘要

Conductive inks based on graphene materials have received significant attention for the fabrication of a wide range of printed and flexible devices.However,the applicationof graphene fillers is limited by their restricted mass production and the low concentration of their suspensions.In this study,a highly concentrated and conductive ink based on defect-free graphene was developed by a scalable fluid dynamics process.A high shear exfoliation and mixing process enabled the production of graphene at a high concentration of 47.5 mg mL^(−1)for graphene ink.The screen-printed graphene conductor exhibits a high electrical conductivity of 1.49×10^(4)S m^(−1)and maintains high conductivity under mechanical bending,compressing,and fatigue tests.Based on the as-prepared graphene ink,a printed electrochemical sodium ion(Na^(+))sensor that shows high potentiometric sensing performance was fabricated.Further,by integrating a wireless electronic module,a prototype Na^(+)-sensing watch is demonstrated for the real-time monitoring of the sodium ion concentration in human sweat during the indoor exercise of a volunteer.The scalable and efficient procedure for the preparation of graphene ink presented in this work is very promising for the low-cost,reproducible,and large-scale printing of flexible and wearable electronic devices.

著录项

  • 来源
    《安徽地质》 |2021年第6期|17-30|共14页
  • 作者单位

    Department of Chemical Engineering Kangwon National University Samcheok Gangwon-do 25913 Republic of Korea;

    Resources Utilization Research Center Korea Institute of Geoscience and Mineral Resources Daejeon 34132 Republic of Korea;

    Department of Chemical Engineering Kangwon National University Samcheok Gangwon-do 25913 Republic of Korea;

    Department of Chemical Engineering Kangwon National University Samcheok Gangwon-do 25913 Republic of Korea;

    Center for Nano Bio Development National Nanofab Center Daejeon 34141 Republic of Korea;

    Department of Chemical Engineering Kangwon National University Samcheok Gangwon-do 25913 Republic of Korea;

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