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      Electrochemical paper-based devices: sensing approaches and progress toward practical applications

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          Abstract

          Paper-based sensors offer an affordable yet powerful platform for field and point-of-care (POC) testing due to their self-pumping ability and utility for many different analytical measurements.

          Abstract

          Paper-based sensors offer an affordable yet powerful platform for field and point-of-care (POC) testing due to their self-pumping ability and utility for many different analytical measurements. When combined with electrochemical detection using small and portable electronics, sensitivity and selectivity of the paper devices can be improved over naked eye detection without sacrificing portability. Herein, we review how the field of electrochemical paper-based analytical devices (ePADs) has grown since it was introduced a decade ago. We start by reviewing fabrication methods relevant to ePADs with more focus given to the electrode fabrication, which is fundamental for electrochemical sensing. Multiple sensing approaches applicable to ePADs are then discussed and evaluated to present applicability, advantages and challenges associated with each approach. Recent applications of ePADs in the fields of clinical diagnostics, environmental testing, and food analysis are also presented. Finally, we discuss how the current ePAD technologies have progressed to meet the analytical and practical specifications required for field and/or POC applications, as well as challenges and outlook.

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          Author and article information

          Contributors
          Journal
          LCAHAM
          Lab on a Chip
          Lab Chip
          Royal Society of Chemistry (RSC)
          1473-0197
          1473-0189
          2020
          2020
          : 20
          : 1
          : 9-34
          Affiliations
          [1 ]Department of Chemistry
          [2 ]Colorado State University
          [3 ]Fort Collins
          [4 ]USA
          [5 ]Department of Pharmaceutical Chemistry
          [6 ]Institute of Nano Science and Technology
          Article
          10.1039/C9LC00903E
          31620764
          ad7dea97-811b-4a11-b492-3dfb29fc88ad
          © 2020

          Free to read

          http://rsc.li/journals-terms-of-use#chorus

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