Positions

Research Areas research areas

Overview

  • Edward Song received a B.S. degree in Mathematics and Engineering from Queen's University, Kingston, ON in 2004, a M.S. degree in Electrical Engineering from the University of Alberta, Edmonton, AB in 2007, and a Ph.D. degree in Electrical Engineering from the Louisiana State University, Baton Rouge, LA in 2014. From 2014 to 2015 he was a postdoctoral researcher and an instructor at the ECE department at LSU. He has worked on various research topics including conducting polymer nanowires, chemiresistive sensors, multi-analyte detection, and microfabrication. In 2015 he joined the Department of Electrical and Computer Engineering at the University of New Hampshire as an assistant professor.
  • Selected Publications

    Academic Article

    Year Title
    2023 Continuous Real-Time Detection of Serotonin Using an Aptamer-Based Electrochemical Biosensor.Biosensors.  13:983. 2023
    2021 Detection of an IL-6 Biomarker Using a GFET Platform Developed with a Facile Organic Solvent-Free Aptamer Immobilization Approach.Diversity.  21:1335. 2021
    2021 Stimuli-Responsive Templated Polymer as a Target Receptor for a Conformation-based Electrochemical Sensing Platform.ACS Appl Polym Mater.  3:329-341. 2021
    2020 Editorial for the Special Issue on Printable and Flexible Electronics for Sensors.Micromachines.  11:E683. 2020
    2020 An integrated microfluidic platform for selective and real-time detection of thrombin biomarkers using a graphene FET.The Analyst.  145:4494-4503. 2020
    2020 Lab-on-a-Chip Systems for Aptamer-Based Biosensing.Micromachines.  11:E220. 2020
    2019 Effects of Impurities on the Electrochemical Characterization of Liquid-Phase Exfoliated Niobium Diselenide NanosheetsThe Journal of Physical Chemistry C: Energy Conversion and Storage, Optical and Electronic Devices, Interfaces, Nanomaterials, and Hard Matter.  123:8671-8680. 2019
    2019 A Single-chain Templated Polymer-based Target Receptor as a New Platform for Label-free Selective Electrochemical SensingConf Proc IEEE Eng Med Biol Soc..  2019:1163-1166. 2019
    2018 Hollow microcarriers for large-scale expansion of anchorage-dependent cells in a stirred bioreactor.Biotechnology and Bioengineering.  115:1717-1728. 2018
    2018 Recent Advances in the Detection of NeurotransmittersChemosensors.  6:1-1. 2018
    2018 Molecularly imprinted polymers for the selective detection of multi-analyte neurotransmittersMicroelectronic Engineering.  187:58-65. 2018
    2018 A Low-Cost Inkjet-Printed Aptamer-Based Electrochemical Biosensor for the Selective Detection of Lysozyme.Biosensors.  8:E7. 2018
    2018 Selective Detection of Lysozyme Biomarker Utilizing Large Area Chemical Vapor Deposition-Grown Graphene-Based Field-Effect Transistor.Frontiers in Bioengineering and Biotechnology.  6:29. 2018
    2017 A chemiresistive glucose sensor fabricated by inkjet printingMicrosystem Technologies: micro and nanosystems information storage and processing systems.  23:3505-3511. 2017
    2016 Design and fabrication of bio-hybrid materials using inkjet printingBiointerphases: an open access journal for the biomaterials interface community.  11:041002-041002. 2016
    2015 Powering Up Dark Silicon: Mitigating the Limitation of Power Delivery via Dynamic Pin SwitchingIEEE Transactions on Emerging Topics in Computing.  3:489-501. 2015
    2015 Inkjet printing of conductive polymer nanowire network on flexible substrates and its application in chemical sensingMicroelectronic Engineering.  145:143-148. 2015
    2015 A portable fluorescent sensor for on-site detection of microalgaeMicroelectronic Engineering.  144:6-11. 2015
    2015 Multi-analyte detection of chemical species using a conducting polymer nanowire-based sensor array platformSensors and Actuators B: Chemical: international journal devoted to research and development of physical and chemical transducers.  215:99-106. 2015
    2015 A Paper-Based Electrochemical Sensor Using Inkjet-Printed Carbon Nanotube ElectrodesECS Journal of Solid State Science and Technology.  4:S3044-S3047. 2015
    2014 A selective hydrogen peroxide sensor based on chemiresistive polyaniline nanowires modified with silver catalytic nanoparticlesJournal of Micromechanics and Microengineering.  24:065004-065004. 2014
    2014 Self-calibration of a polyaniline nanowire-based chemiresistive pH sensorMicroelectronic Engineering.  116:26-32. 2014
    2014 Inkjet-Printed Carbon Nanotube Electrodes with Low Sheet Resistance for Electrochemical Sensor ApplicationsJournal of Electrochemical Society.  161:B3044-B3048. 2014
    2013 Conducting Polyaniline Nanowire and Its Applications in Chemiresistive Sensing.Nanomaterials.  3:498-523. 2013
    2009 Experimental Validation of Nonlinear Control for a Voltage Source ConverterIEEE Transactions on Control Systems Technology.  17:1135-1144. 2009

    Chapter

    Year Title
    2017 Inkjet Printing of Conducting Polymer Nanomaterials.  245-264. 2017

    Conference Paper

    Year Title
    2019 A Single-chain Templated Polymer-based Target Receptor as a New Platform for Label-free Selective Electrochemical Sensing.Annual International Conference of the IEEE Engineering in Medicine and Biology - Proceedings. 1163-1166. 2019
    2019 NON-ENZYMATIC ELECTROCHEMICAL DETECTION OF GLUTAMATE USING TEMPLATED POLYMER-BASED TARGET RECEPTORS.Int Solid State Sens Actuators Microsyst Conf. 613-616. 2019

    Teaching Activities

  • Adv Topics Electrical Engineer Taught course 2023
  • Doctoral Research Taught course 2023
  • Junior Laboratory II Taught course 2023
  • Junior Laboratory II Taught course 2023
  • Junior Laboratory II Taught course 2023
  • Junior Laboratory II Taught course 2023
  • Doctoral Research Taught course 2022
  • Doctoral Research Taught course 2022
  • Adv Top/Electrical Engineering Taught course 2021
  • Doctoral Research Taught course 2021
  • Intro to Digital Systems Taught course 2021
  • Doctoral Research Taught course 2021
  • Intro to Digital Systems Taught course 2021
  • Intro to Digital Systems Taught course 2021
  • Intro to Digital Systems Taught course 2021
  • Intro to Digital Systems Taught course 2021
  • Intro to Digital Systems Taught course 2021
  • Intro to Digital Systems Taught course 2021
  • Intro to Digital Systems Taught course 2021
  • Intro to Digital Systems Taught course 2021
  • Intro to Digital Systems Taught course 2021
  • Intro to Digital Systems Taught course 2021
  • Intro to Digital Systems Taught course 2021
  • Intro to Digital Systems Taught course 2021
  • Adv Top/Electrical Engineering Taught course 2020
  • Electric Circuits Taught course 2020
  • Electric Circuits Recitation Taught course 2020
  • Spc Top/Electric or Comptr Eng Taught course 2020
  • SpcTop/Solid-State Ele Taught course 2020
  • Spec Top/Solid-State Ele Taught course 2020
  • Doctoral Research Taught course 2019
  • Electric Circuits Taught course 2019
  • Electric Circuits Recitation Taught course 2019
  • AvdTop/Microsystems&Biosensors Taught course 2019
  • Doctoral Research Taught course 2019
  • Electronic Design I Taught course 2019
  • Doctoral Research Taught course 2018
  • Electronic Design II Taught course 2018
  • Electronic Design II Taught course 2018
  • Doctoral Research Taught course 2018
  • Top/Microsystems & Biosensors Taught course 2018
  • Electronic Design II Taught course 2017
  • Electronic Design II Taught course 2017
  • Rsrch Exp/Elect & Comp Engr Taught course 2017
  • Doctoral Research Taught course 2017
  • Electronic Design I Taught course 2017
  • Electronic Design I Taught course 2017
  • Electronic Design I Taught course 2017
  • Electronic Design I Taught course 2017
  • Top/Microsystems & Biosensors Taught course 2017
  • Electric Circuits Taught course 2016
  • Electric Circuits Taught course 2016
  • Electric Circuits Taught course 2016
  • Electric Circuits Taught course 2016
  • Electric Circuits Recitation Taught course 2016
  • Electronic Design I Taught course 2016
  • Electric Circuits Taught course 2015
  • Electric Circuits Taught course 2015
  • Electric Circuits Recitation Taught course 2015
  • Education And Training

    Full Name

  • Edward Song