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Issue DateTitleAuthor(s)
2016Graphene-polyaniline modified electrochemical droplet-based microfluidic sensor for high-throughput determination of 4-aminophenolRattanarat P.; Suea-Ngam A.; Ruecha N.; Siangproh W.; Henry C.S.; Srisa-Art M.; Chailapakul O.
2017Electrochemical paper-based peptide nucleic acid biosensor for detecting human papillomavirusTeengam P.; Siangproh W.; Tuantranont A.; Henry C.S.; Vilaivan T.; Chailapakul O.
2017Multiplex Paper-Based Colorimetric DNA Sensor Using Pyrrolidinyl Peptide Nucleic Acid-Induced AgNPs Aggregation for Detecting MERS-CoV, MTB, and HPV OligonucleotidesTeengam P.; Siangproh W.; Tuantranont A.; Vilaivan T.; Chailapakul O.; Henry C.S.
2018Electrochemical impedance-based DNA sensor using pyrrolidinyl peptide nucleic acids for tuberculosis detectionTeengam P.; Siangproh W.; Tuantranont A.; Vilaivan T.; Chailapakul O.; Henry C.S.
2017Boron Doped Diamond Paste Electrodes for Microfluidic Paper-Based Analytical DevicesNantaphol S.; Channon R.B.; Kondo T.; Siangproh W.; Chailapakul O.; Henry C.S.
2013A microfluidic paper-based analytical device for rapid quantification of particulate chromiumRattanarat P.; Dungchai W.; Cate D.M.; Siangproh W.; Volckens J.; Chailapakul O.; Henry C.S.
2012Sodium dodecyl sulfate-modified electrochemical paper-based analytical device for determination of dopamine levels in biological samplesRattanarat P.; Dungchai W.; Siangproh W.; Chailapakul O.; Henry C.S.
2019Janus electrochemistry: Simultaneous electrochemical detection at multiple working conditions in a paper-based analytical deviceNantaphol S.; Kava A.A.; Channon R.B.; Kondo T.; Siangproh W.; Chailapakul O.; Henry C.S.
2010Lab-on-paper with dual electrochemical/ colorimetric detection for simultaneous determination of gold and ironApilux A.; Dungchai W.; Siangproh W.; Praphairaksit N.; Henry C.S.; Chailapakul O.