Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 79 checked references that resolve
resolves10.1038/s41598-017-06144-9Single Microfluidic Electrochemical Sensor System for Simultaneous Multi-Pulmonary Hypertension Biomarker Analyses
resolves10.1021/ac9701997Microchannel Electrophoretic Separations of DNA in Injection-Molded Plastic Substrates
resolves10.1038/srep35111Fully inkjet-printed microfluidics: a solution to low-cost rapid three-dimensional microfluidics fabrication with numerous electrical and sensing applications
resolves10.1039/D0TC01423KNanoporous gold peel-and-stick biosensors created with etching inkjet maskless lithography for electrochemical pesticide monitoring with microfluidics
resolves10.1039/C5LC00235DInkjet printing for biosensor fabrication: combining chemistry and technology for advanced manufacturing
resolves10.1039/C6LC01064DAn inkjet printed, roll-coated digital microfluidic device for inexpensive, miniaturized diagnostic assays
resolves10.1126/science.1131007A Systems Approach to Measuring the Binding Energy Landscapes of Transcription Factors
resolves10.1002/admt.201800546Printing Conductive Nanomaterials for Flexible and Stretchable Electronics: A Review of Materials, Processes, and Applications
resolves10.1007/s10439-010-0218-9From Cleanroom to Desktop: Emerging Micro-Nanofabrication Technology for Biomedical Applications
resolves10.1016/j.talanta.2015.09.002Simple and rapid fabrication of disposable carbon-based electrochemical cells using an electronic craft cutter for sensor and biosensor applications
resolves10.3390/mi9090461Low-Cost, Accessible Fabrication Methods for Microfluidics Research in Low-Resource Settings
resolves10.1038/s41598-019-42644-6Hand-Fabricated CNT/AgNPs Electrodes using Wax-on-Plastic Platforms for Electro-Immunosensing Application
resolves10.1039/C9LC00083FUsing printer ink color to control the behavior of paper microfluidics
resolves10.1039/B918089CLow-cost rapid prototyping of flexible microfluidic devices using a desktop digital craft cutter
resolves10.1039/B711622EShrinky-Dink microfluidics: rapid generation of deep and rounded patterns
resolves10.1021/ac034437bA Dry Process for Production of Microfluidic Devices Based on the Lamination of Laser-Printed Polyester Films
resolves10.1038/nprot.2015.051Inexpensive, rapid prototyping of microfluidic devices using overhead transparencies and a laser print, cut and laminate fabrication method
resolves10.1039/C9LC00417CPolycaprolactone-enabled sealing and carbon composite electrode integration into electrochemical microfluidics
resolves10.1039/D0LC00763CRapid and inexpensive microfluidic electrode integration with conductive ink
resolves10.3390/s18010104A Fully Integrated Paper-Microfluidic Electrochemical Device for Simultaneous Analysis of Physiologic Blood Ions
resolves10.1109/JMEMS.2019.2914110Rapid and Inexpensive Method for Fabrication and Integration of Electrodes in Microfluidic Devices
resolves10.1002/adma.201905311CRISPR/Cas13a‐Powered Electrochemical Microfluidic Biosensor for Nucleic Acid Amplification‐Free miRNA Diagnostics
resolves10.1016/j.snb.2014.05.009Rapid prototyping of multifunctional microfluidic cartridges for electrochemical biosensing platforms
resolves10.3390/mi8010017Rapid Fabrication of Electrophoretic Microfluidic Devices from Polyester, Adhesives and Gold Leaf
resolves10.1021/acsomega.8b02592Programmable Contact Printing Using Ballpoint Pens with a Digital Plotter for Patterning Electrodes on Paper
resolves10.1063/5.0071176Low-cost and cleanroom-free prototyping of microfluidic and electrochemical biosensors: Techniques in fabrication and bioconjugation
resolves10.1039/C6LC00953KA centrifugal microfluidic device with integrated gold leaf electrodes for the electrophoretic separation of DNA
resolves10.1021/ac402003vIntegrated Digital Microfluidic Platform for Voltammetric Analysis
resolves10.1039/C9AY02350JElectrochemical paper-based analytical devices: ten years of development
resolves10.1021/acssensors.1c01527Electrochemical Capillary-Flow Immunoassay for Detecting Anti-SARS-CoV-2 Nucleocapsid Protein Antibodies at the Point of Care
resolves10.1149/2.0561608jesRapid and Direct Determination of Diffusion Coefficients Using Microelectrode Arrays
resolves10.1021/ac101303sPulse-Voltammetric Glucose Detection at Gold Junction Electrodes
resolves10.1016/j.microc.2017.03.023Development of non-enzymatic and highly selective hydrogen peroxide sensor based on nanoporous gold prepared by a simple unusual electrochemical approach
resolves10.1016/j.bios.2019.01.043Simultaneous voltammetric determination of acetaminophen and isoniazid using MXene modified screen-printed electrode
resolves10.1002/anie.201902664Enzymatic/Immunoassay Dual‐Biomarker Sensing Chip: Towards Decentralized Insulin/Glucose Detection
resolves10.1021/la00013a001Oxygen and hydrogen peroxide reduction on the gold(100) surface in alkaline electrolyte: the roles of surface structure and hydroxide adsorption
resolves10.1016/j.jelechem.2017.10.004Electrodeposited honeycomb-like dendritic porous gold surface: An efficient platform for enzyme-free hydrogen peroxide sensor at low overpotential
resolves10.1016/j.electacta.2013.06.141Synthesis of gold nanostars with tunable morphology and their electrochemical application for hydrogen peroxide sensing
resolves10.5772/63519Electrochemically Reduced Graphene Oxide-Nafion/Au Nanoparticle Modified Electrode for Hydrogen Peroxide Sensing
resolves10.3390/s30900350A Novel Hydrogen Peroxide Sensor via the Direct Electrochemistry of Horseradish Peroxidase Immobilized on Colloidal Gold Modified Screen-printed Electrode
resolves10.1016/j.electacta.2008.11.049Diffusion controlled analytical performances of hydrogen peroxide sensors: Towards the sensor with the largest dynamic range
resolves10.1063/1.5123130Optimized commercial desktop cutter technique for rapid-prototyping of microfluidic devices and application to Taylor dispersion
resolves10.1063/1.5086671Microfluidics on the fly: Inexpensive rapid fabrication of thermally laminated microfluidic devices for live imaging and multimodal perturbations of multicellular systems
resolves10.1021/acsnano.8b02505Roll-to-Roll Gravure Printed Electrochemical Sensors for Wearable and Medical Devices
resolves10.1021/jp509986sFast Kinetics of Thiolic Self-Assembled Monolayer Adsorption on Gold: Modeling and Confirmation by Protein Binding
resolves10.1021/la800711mInkjet-Printed Thiol Self-Assembled Monolayer Structures on Gold: Quality Control and Microarray Electrode Fabrication
resolves10.1039/C9AN01664CA dual-enzyme, micro-band array biosensor based on the electrodeposition of carbon nanotubes embedded in chitosan and nanostructured Au-foams on microfabricated gold band electrodes
resolves10.1039/C1AN15738HRecent advances in electrochemical sensing for hydrogen peroxide: a review
resolves10.1016/j.aca.2016.03.018A novel highly flexible, simple, rapid and low-cost fabrication tool for paper-based microfluidic devices (μPADs) using technical drawing pens and in-house formulated aqueous inks
The 6 references without a DOI — listed, not checked
no DOI — not checkedH.Thach , H.-T.Nguyen , U.Tong , T.Hoang , T.-A.Vuong , C. M.Perrault and K.Huynh , Comparison of Nail Polish Meth (Acrylates) (MA) Gel Photoresist and Vinyl Adhesive Paper for Low-Cost Microfluidics Fabrication , 2020
no DOI — not checkedD1LC01100F/cit38/1
no DOI — not checkedL.Wang , S.Gupta , K. J.Loh and H. S.Koo , in Volume 1: Multifunctional Materials; Mechanics and Behavior of Active Materials; Integrated System Design and Implementation; Structural Health Monitoring , American Society of Mechanical Engineers , Stowe, Vermont, USA , 2016 , p. V001T05A006
no DOI — not checkedD1LC01100F/cit53/1
no DOI — not checkedA. J.Bard and L. R.Faulkner , Electrochemical methods: fundamentals and applications , Wiley , New York , 2nd edn, 2001
no DOI — not checkedS.Kumar-Krishnan , O. A.de Fuentes , E.Prokhorov and J. G.Luna-Barcenas , in 2014 IEEE 9th IberoAmerican Congress on Sensors , IEEE , Bogota, Colombia , 2014 , pp. 1–4
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