4.7 Review

Flexible and wearable electrochemical biosensors based on two-dimensional materials: Recent developments

期刊

ANALYTICAL AND BIOANALYTICAL CHEMISTRY
卷 413, 期 3, 页码 727-762

出版社

SPRINGER HEIDELBERG
DOI: 10.1007/s00216-020-03002-y

关键词

Biosensor; 2D materials; Flexible; wearable sensors; Electrochemical sensors

资金

  1. Department of Science and Technology (DST)-SERB Early Career Research project [ECR/2017/001850]
  2. DST-Nanomission [DST/NM/NT/2019/205(G)]
  3. DST-SHRI [DST/TDT/SHRI-34/2018]
  4. Karnataka Science and Technology Promotion Society [829/315, KSTePS/VGST-RGS-F/2018-19/GRD]
  5. Jain University [11 (39)/17/013/2017SG]
  6. Nanomission [SR/NM/NS-20/2014]

向作者/读者索取更多资源

The research interest in wearable sensors, particularly in electrochemical biosensors based on two-dimensional nanomaterials, has significantly increased in recent years. The use of flexible conductive platforms for the development of wearable electrochemical biosensors offers new opportunities to monitor biologically relevant molecules in real-time. These advancements have the potential to revolutionize healthcare monitoring and clinical analysis.
The research interest in wearable sensors has tremendously increased in recent years. Amid the different biosensors, electrochemical biosensors are unparalleled and ideal for the design and manufacture of such flexible and wearable sensors because of their various benefits, including convenient operation, quick response, portability, and inherent miniaturization. A number of studies on flexible and wearable electrochemical biosensors have been reported in recent years for invasive/non-invasive and real-time monitoring of biologically relevant molecules such as glucose, lactate, dopamine, cortisol, and antigens. To attain this, novel two-dimensional nanomaterials and their hybrids, various substrates, and detection methods have been explored to fabricate flexible conductive platforms that can be used to develop flexible electrochemical biosensors. In particular, there are many advantages associated with the advent of two-dimensional materials, such as light weight, high stretchability, high performance, and excellent biocompatibility, which offer new opportunities to improve the performance of wearable electrochemical sensors. Therefore, it is urgently required to study wearable/flexible electrochemical biosensors based on two-dimensional nanomaterials for health care monitoring and clinical analysis. In this review, we described recently reported flexible electrochemical biosensors based on two-dimensional nanomaterials. We classified them into specific groups, including enzymatic/non-enzymatic biosensors and affinity biosensors (immunosensors), recent developments in flexible electrochemical immunosensors based on polymer and plastic substrates to monitor biologically relevant molecules. This review will discuss perspectives on flexible electrochemical biosensors based on two-dimensional materials for the clinical analysis and wearable biosensing devices, as well as the limitations and prospects of the these electrochemical flexible/wearable biosensors.

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