Ingrid Fritsch
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Professor
Also affiliated: University of California, Riverside (1997); Atrium Health Wake Forest Baptist (1996); University of Illinois Urbana-Champaign (1989–1992); University of Hull (2012); Wake Forest University (1996); Massachusetts Institute of Technology (1992); Ruhr University Bochum (2003–2006)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Ingrid Fritsch investigates the development of miniaturized analytical devices and sensors, focusing on redox-magnetohydrodynamic microfluidics. Her work has led to the creation of multifunctional microarrays for protein and DNA hybridization, which are interfaced with electrochemical detection systems. These advancements are significant for creating portable instruments for environmental monitoring and point-of-care diagnostics.
Dr. Fritsch's academic career includes a professorship in Chemistry and Biochemistry at the University of Arkansas. She holds a B.S. from the University of Utah and a Ph.D. from the University of Illinois at Urbana-Champaign, followed by postdoctoral work at MIT. Her contributions to the field have been recognized with the Society of Electroanalytical Chemistry Young Investigator Award, a National Science Foundation Career Award, and an NSF Special Creativity Extension. She is also a Fellow of the National Academy of Inventors and the American Association for the Advancement of Science, and has received the University of Arkansas Alumni Distinguished Faculty Award in Research. Dr. Fritsch has ten issued U.S. patents and has co-founded two startup companies.
Metrics
- h-index: 27
- Publications: 117
- Citations: 1,936
Positions
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Professor 2005–presentUniversity of Arkansas Fayetteville Chemistry and Biochemistry ORCID
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Member of the Board 2003–2015SFC Fluidics LLC ORCID
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Chief Science Officer 2003–2006SFC Fluidics LLC ORCID
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Chief Technological Officer 2002–2006Vegrandis LLC ORCID
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Associate Professor 1997–2005University of Arkansas Fayetteville Chemistry and Biochemistry ORCID
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Assistant Professor 1992–1997University of Arkansas Fayetteville Chemistry and Biochemistry ORCID
Selected Publications
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Lessons Learned in Teaching Electrochemistry (2026)
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Influence of mass transport near parallel band pumping electrodes and walls on the fate of chemical species in a sample plug introduced onto a redox-magnetohydrodynamics microfluidics chip (2026)
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Modeling Charging Current Dynamics at Microelectrodes and their Interfaces with Electrolyte and Insulators with a Focus on Microfabricated Gold Microband Electrodes on an SU-8 Substrate (2024)
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In Situ and 2D and 3D in Silico Redox Cycling Studies for Design Optimization of Coplanar Arrays of Microband Electrodes in a 70 μm × 100 μm Electroactive Footprint (2024)
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The Fate of Chemical Species from a Sample Introduced into a Redox-Magnetohydrodynamics (R-MHD) Microfluidics Chamber: Influence of Diffusion within Flow Fields Near Pumping Electrodes and Walls and Under Different Experimental Conditions (2023)
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Single Particle Electrochemical Oxidation of Polyvinylpyrrolidone-Capped Silver Nanospheres, Nanocubes, and Nanoplates in Potassium Nitrate and Potassium Hydroxide Solutions (2022)
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Characterization of Nanoparticles in Diverse Mixtures Using Localized Surface Plasmon Resonance and Nanoparticle Tracking by Dark-Field Microscopy with Redox Magnetohydrodynamics Microfluidics (2022)
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Manipulating Microvolumes of Fluids By Redox-Magnetohydrodynamics for Applications in Chemical Analysis (2021)
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Sustaining redox-magnetohydrodynamics (R-MHD) microfluidics by switching oppositely-polarized permanent magnets: Synchronized activation and automation (2021)
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Dopamine, vocalization, and astrocytes (2021)
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Miniaturized probe on polymer SU-8 with array of individually addressable microelectrodes for electrochemical analysis in neural and other biological tissues (2021)
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Spatially Directed Functionalization by Co-electropolymerization of Two 3,4-ethylenedioxythiophene Derivatives on Microelectrodes within an Array (2020)
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Manipulating Microvolumes of Fluids in Different Paths By Magnetohydrodynamics (2020)
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Continuous Microfluidic Pump Involving Conducting Polymer Modified Redox-Magnetohydrodynamics (R-MHD) (2019)
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Chip-Scale Electrodeposition and Analysis of Poly(3,4-ethylenedioxythiophene) (PEDOT) Films for Enhanced and Sustained Microfluidics Using DC-Redox-Magnetohydrodynamics (2019)
Collaboration Network
Top Collaborators
- Visualization and Measurement of Natural Convection from Electrochemically-Generated Density Gradients at Concentric Microdisk and Ring Electrodes in a Microfluidic System
- Combining magnetic forces for contactless manipulation of fluids in microelectrode-microfluidic systems
- Redox-Magnetohydrodynamically Controlled Fluid Flow with Poly(3,4-ethylenedioxythiophene) Coupled to an Epitaxial Light Sheet Confocal Microscope for Image Cytometry Applications
- Chip-Scale Electrodeposition and Analysis of Poly(3,4-ethylenedioxythiophene) (PEDOT) Films for Enhanced and Sustained Microfluidics Using DC-Redox-Magnetohydrodynamics
- A light sheet confocal microscope for image cytometry with a variable linear slit detector
Showing 5 of 17 shared publications
- Magnetic Fields for Fluid Motion
- Investigations of Redox Magnetohydrodynamic Fluid Flow At Microelectrode Arrays Using Microbeads
- Manipulating fluid flow on a chip through controlled-current redox magnetohydrodynamics
- Redox-Magnetohydrodynamic Microfluidics Without Channels and Compatible with Electrochemical Detection Under Immunoassay Conditions
- Redox magnetohydrodynamic enhancement of stripping voltammetry: toward portable analysis using disposable electrodes, permanent magnets, and small volumes
Showing 5 of 11 shared publications
- Application of Electrochemical Redox Cycling: Toward Differentiation of Dopamine and Norepinephrine
- Detection of dopamine in the presence of excess ascorbic acid at physiological concentrations through redox cycling at an unmodified microelectrode array
- Redox Cycling Behavior of Individual and Binary Mixtures of Catecholamines at Gold Microband Electrode Arrays
- Miniaturized probe on polymer SU-8 with array of individually addressable microelectrodes for electrochemical analysis in neural and other biological tissues
- Detection of Dopamine in the Presence of Interferents Using Redox Cycling
Showing 5 of 10 shared publications
- Redox-Magnetohydrodynamic Microfluidics Without Channels and Compatible with Electrochemical Detection Under Immunoassay Conditions
- Poly(3,4-ethylenedioxythiophene)-Modified Electrodes for Microfluidics Pumping with Redox-Magnetohydrodynamics: Improving Compatibility for Broader Applications by Eliminating Addition of Redox Species to Solution
- Maximizing Flow Velocities in Redox-Magnetohydrodynamic Microfluidics Using the Transient Faradaic Current
- New Advances and Opportunities of Magnetohydrodynamic Microfluidics
- Modified Surfaces in Redox-Magnetohydrodynamics
Showing 5 of 8 shared publications
- Self-Contained Microelectrochemical Immunoassay for Small Volumes Using Mouse IgG as a Model System
- Immobilized Enzyme-Linked DNA-Hybridization Assay with Electrochemical Detection forCryptosporidiumparvumhsp70 mRNA
- Characterization and Pumping
- Study of magnetohydrodynamic driven flow through LTCC channel with self-contained electrodes
- Evaluation of Screen-Printed Gold on Low-Temperature Co-Fired Ceramic as a Substrate for the Immobilization of Electrochemical Immunoassays
Showing 5 of 7 shared publications
- Characterization and Pumping
- Study of magnetohydrodynamic driven flow through LTCC channel with self-contained electrodes
- Use of Paired, Bonded NdFeB Magnets in Redox Magnetohydrodynamics
- Redox magnetohydrodynamic enhancement of stripping voltammetry: toward portable analysis using disposable electrodes, permanent magnets, and small volumes
- Inducing Convection in Solutions on a Small Scale: Electrochemistry at Microelectrodes Embedded in Permanent Magnets
Showing 5 of 7 shared publications
- Spatially Directed Functionalization by Co-electropolymerization of Two 3,4-ethylenedioxythiophene Derivatives on Microelectrodes within an Array
- Conducting Polymers Covalently Linked to Enzymes and Mediators and Electropolymerized on Microelectrode Arrays
- New Advances and Opportunities of Magnetohydrodynamic Microfluidics
- Modified Surfaces in Redox-Magnetohydrodynamics
- Electrochemical Characterization of Nanoparticles With Different Morphologies
Showing 5 of 7 shared publications
- Redox-Magnetohydrodynamically Controlled Fluid Flow with Poly(3,4-ethylenedioxythiophene) Coupled to an Epitaxial Light Sheet Confocal Microscope for Image Cytometry Applications
- A light sheet confocal microscope for image cytometry with a variable linear slit detector
- High-throughput microfluidic line scan imaging for cytological characterization
- New Advances and Opportunities of Magnetohydrodynamic Microfluidics
- Microfluidics with Alternating Current-Redox Magnetohydrodynamics at Modified Electrodes for Cell Identification
Showing 5 of 6 shared publications
- Visualization and Measurement of Natural Convection from Electrochemically-Generated Density Gradients at Concentric Microdisk and Ring Electrodes in a Microfluidic System
- Flat Flow Profiles Achieved with Microfluidics Generated by Redox-Magnetohydrodynamics
- Microfluidic rotational flow generated by redox-magnetohydrodynamics (MHD) under laminar conditions using concentric disk and ring microelectrodes
- Redox-Magnetohydrodynamics, Flat Flow Profile-Guided Enzyme Assay Detection: Toward Multiple, Parallel Analyses
- Modified Surfaces in Redox-Magnetohydrodynamics
Showing 5 of 6 shared publications
- Dopamine, vocalization, and astrocytes
- Miniaturized probe on polymer SU-8 with array of individually addressable microelectrodes for electrochemical analysis in neural and other biological tissues
- In Situ and 2D and 3D in Silico Redox Cycling Studies for Design Optimization of Coplanar Arrays of Microband Electrodes in a 70 μm × 100 μm Electroactive Footprint
- Redox Cycling Behavior of Catecholamines and Their Mixtures at Different Diffusion Distances: Steps Toward Quantitative Speciation
- Challenges of Simultaneous Measurement of Catecholamines in Mixtures: Steps Toward Neural Probes Suitable for In Vivo Analysis
Showing 5 of 6 shared publications
- Characterization and Pumping
- Low-temperature co-fired ceramic microchannels with individually addressable screen-printed gold electrodes on four walls for self-contained electrochemical immunoassays
- Evaluation of Screen-Printed Gold on Low-Temperature Co-Fired Ceramic as a Substrate for the Immobilization of Electrochemical Immunoassays
- Low Temperature Co-Fired Ceramics in Electrochemical Applications
- Low Temperature Co-fired Ceramic Probes for Studies in the Neurosciences
- Characterization and Pumping
- Investigations of Redox Magnetohydrodynamic Fluid Flow At Microelectrode Arrays Using Microbeads
- Factors Influencing Redox Magnetohydrodynamic-Induced Convection for Enhancement of Stripping Analysis
- Redox magnetohydrodynamic enhancement of stripping voltammetry: toward portable analysis using disposable electrodes, permanent magnets, and small volumes
- Microarray Technology for Allergen Sensors
- Redox-Magnetohydrodynamically Controlled Fluid Flow with Poly(3,4-ethylenedioxythiophene) Coupled to an Epitaxial Light Sheet Confocal Microscope for Image Cytometry Applications
- A light sheet confocal microscope for image cytometry with a variable linear slit detector
- High-throughput microfluidic line scan imaging for cytological characterization
- New Advances and Opportunities of Magnetohydrodynamic Microfluidics
- Microfluidics with Alternating Current-Redox Magnetohydrodynamics at Modified Electrodes for Cell Identification
- Miniaturized probe on polymer SU-8 with array of individually addressable microelectrodes for electrochemical analysis in neural and other biological tissues
- Sustaining redox-magnetohydrodynamics (R-MHD) microfluidics by switching oppositely-polarized permanent magnets: Synchronized activation and automation
- In Situ and 2D and 3D in Silico Redox Cycling Studies for Design Optimization of Coplanar Arrays of Microband Electrodes in a 70 μm × 100 μm Electroactive Footprint
- The Fate of Chemical Species from a Sample Introduced into a Redox-Magnetohydrodynamics (R-MHD) Microfluidics Chamber: Influence of Diffusion within Flow Fields Near Pumping Electrodes and Walls and Under Different Experimental Conditions
- Modeling Charging Current Dynamics at Microelectrodes and their Interfaces with Electrolyte and Insulators with a Focus on Microfabricated Gold Microband Electrodes on an SU-8 Substrate
- Magnetic Fields for Fluid Motion
- Redox-Magnetohydrodynamics for Microfluidic Control: Remote from Active Electrodes and Their Diffusion Layers
- Control of Solution Velocities by Redox Magnetohydrodynamics in Microelectrode Systems
- Toward On-Chip Processes Using Redox-Magnetohydrodynamic Microfluidics without Channels
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