| Evaluating Analytical Expressions for Scanning Electrochemical Cell Microscopy (SECCM) | Anderson, Kamsy Lerae | Analytical Chemistry | 2023 |
| Ultrahigh-Throughput Single-Particle Hyperspectral Imaging of Gold Nanoparticles | Batey, James Ethan | Analytical Chemistry | 2023 |
| Ultrahigh-Throughput Single-Particle Hyperspectral Imaging of Gold Nanoparticles | Dong, Bin | Analytical Chemistry | 2023 |
| Evaluating Analytical Expressions for Scanning Electrochemical Cell Microscopy (SECCM) | Edwards, Martin Andrew | Analytical Chemistry | 2023 |
| Ultrahigh-Throughput Single-Particle Hyperspectral Imaging of Gold Nanoparticles | Giang, Hannah | Analytical Chemistry | 2023 |
| Ultrahigh-Throughput Single-Particle Hyperspectral Imaging of Gold Nanoparticles | Yang, Meek | Analytical Chemistry | 2023 |
| Finite Element Modeling of the Combined Faradaic and Electrostatic Contributions to the Voltammetric Response of Monolayer Redox Films | Edwards, Martin Andrew | Analytical Chemistry | 2022 |
| Mediator-Free Self-Powered Bioassay for Wide-Range Detection of Dissolved Carbon Dioxide | Ensafi, Ali Asghar | Analytical Chemistry | 2022 |
| Liquid Sampling-Atmospheric Pressure Glow Discharge Ionization as a Technique for the Characterization of Salt-Containing Organic Samples | Wilkins, Charles L. | Analytical Chemistry | 2020 |
| Microdialysis Sampling of Quorum Sensing Homoserine Lactones during Biofilm Formation | Diaz Perez, Alda Alexa | Analytical Chemistry | 2019 |
| Microdialysis Sampling of Quorum Sensing Homoserine Lactones during Biofilm Formation | Lay Jr, Jackson Oliver | Analytical Chemistry | 2019 |
| Microdialysis Sampling of Quorum Sensing Homoserine Lactones during Biofilm Formation | Liyanage, Rohana | Analytical Chemistry | 2019 |
| Microdialysis Sampling of Quorum Sensing Homoserine Lactones during Biofilm Formation | Stenken, Julie Ann | Analytical Chemistry | 2019 |
| Microdialysis Sampling of Quorum Sensing Homoserine Lactones during Biofilm Formation | Vasicek, Thaddeus William | Analytical Chemistry | 2019 |
| Redox-Magnetohydrodynamically Controlled Fluid Flow with Poly(3,4-ethylenedioxythiophene) Coupled to an Epitaxial Light Sheet Confocal Microscope for Image Cytometry Applications | Benson, Devin | Analytical Chemistry | 2018 |
| Redox-Magnetohydrodynamically Controlled Fluid Flow with Poly(3,4-ethylenedioxythiophene) Coupled to an Epitaxial Light Sheet Confocal Microscope for Image Cytometry Applications | Fritsch, Ingrid | Analytical Chemistry | 2018 |
| Redox-Magnetohydrodynamically Controlled Fluid Flow with Poly(3,4-ethylenedioxythiophene) Coupled to an Epitaxial Light Sheet Confocal Microscope for Image Cytometry Applications | Khan, Mohammad Foysal Zahid | Analytical Chemistry | 2018 |
| In Situ Inner Lumen Attachment of Heparin to Poly(ether sulfone) Hollow Fiber Membranes Used for Microdialysis Sampling | Phillips, Sarah Jane | Analytical Chemistry | 2018 |
| In Situ Inner Lumen Attachment of Heparin to Poly(ether sulfone) Hollow Fiber Membranes Used for Microdialysis Sampling | Stenken, Julie Ann | Analytical Chemistry | 2018 |
| Brominated Graphene as Mimetic Peroxidase for Sulfide Ion Recognition | Gundampati, Ravi Kumar | Analytical Chemistry | 2017 |
| Application of Electrochemical Redox Cycling: Toward Differentiation of Dopamine and Norepinephrine | Fritsch, Ingrid | Analytical Chemistry | 2016 |
| 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 | Fritsch, Ingrid | Analytical Chemistry | 2016 |
| Application of Electrochemical Redox Cycling: Toward Differentiation of Dopamine and Norepinephrine | Hu, Mengjia | Analytical Chemistry | 2016 |
| 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 | Nash, Christena Kayl | Analytical Chemistry | 2016 |
| Redox Cycling Behavior of Individual and Binary Mixtures of Catecholamines at Gold Microband Electrode Arrays | Fritsch, Ingrid | Analytical Chemistry | 2015 |
| Redox Cycling Behavior of Individual and Binary Mixtures of Catecholamines at Gold Microband Electrode Arrays | Hu, Mengjia | Analytical Chemistry | 2015 |
| Redox-Magnetohydrodynamics, Flat Flow Profile-Guided Enzyme Assay Detection: Toward Multiple, Parallel Analyses | Fritsch, Ingrid | Analytical Chemistry | 2014 |
| Redox-Magnetohydrodynamics, Flat Flow Profile-Guided Enzyme Assay Detection: Toward Multiple, Parallel Analyses | Sahore, Vishal | Analytical Chemistry | 2014 |
| Matrix-Assisted Ionization Vacuum for High-Resolution Fourier Transform Ion Cyclotron Resonance Mass Spectrometers | Tisdale, Evgenia | Analytical Chemistry | 2014 |
| Matrix-Assisted Ionization Vacuum for High-Resolution Fourier Transform Ion Cyclotron Resonance Mass Spectrometers | Wilkins, Charles L. | Analytical Chemistry | 2014 |
| 3D Imaging of Flow Patterns in an Internally-Pumped Microfluidic Device: Redox Magnetohydrodynamics and ElectrochemicallyGenerated Density Gradients | Fritsch, Ingrid | Analytical Chemistry | 2013 |
| Flat Flow Profiles Achieved with Microfluidics Generated by Redox-Magnetohydrodynamics | Fritsch, Ingrid | Analytical Chemistry | 2013 |
| 3D Imaging of Flow Patterns in an Internally-Pumped Microfluidic Device: Redox Magnetohydrodynamics and ElectrochemicallyGenerated Density Gradients | Gao, Feng | Analytical Chemistry | 2013 |
| 3D Imaging of Flow Patterns in an Internally-Pumped Microfluidic Device: Redox Magnetohydrodynamics and ElectrochemicallyGenerated Density Gradients | Heyes, Colin David | Analytical Chemistry | 2013 |
| 3D Imaging of Flow Patterns in an Internally-Pumped Microfluidic Device: Redox Magnetohydrodynamics and ElectrochemicallyGenerated Density Gradients | Kreidermacher, Adam James | Analytical Chemistry | 2013 |
| Flat Flow Profiles Achieved with Microfluidics Generated by Redox-Magnetohydrodynamics | Sahore, Vishal | Analytical Chemistry | 2013 |
| Maximizing Flow Velocities in Redox-Magnetohydrodynamic Microfluidics Using the Transient Faradaic Current | Fritsch, Ingrid | Analytical Chemistry | 2012 |
| Maximizing Flow Velocities in Redox-Magnetohydrodynamic Microfluidics Using the Transient Faradaic Current | Homesley, Jerry J. | Analytical Chemistry | 2012 |
| Maximizing Flow Velocities in Redox-Magnetohydrodynamic Microfluidics Using the Transient Faradaic Current | Nash, Christena Kayl | Analytical Chemistry | 2012 |
| Maximizing Flow Velocities in Redox-Magnetohydrodynamic Microfluidics Using the Transient Faradaic Current | Weston, Melissa Christine | Analytical Chemistry | 2012 |
| Investigations of Redox Magnetohydrodynamic Fluid Flow At Microelectrode Arrays Using Microbeads | Anderson, Emily Clark | Analytical Chemistry | 2010 |
| Investigations of Redox Magnetohydrodynamic Fluid Flow At Microelectrode Arrays Using Microbeads | Fritsch, Ingrid | Analytical Chemistry | 2010 |
| Magnetic Fields for Fluid Motion | Fritsch, Ingrid | Analytical Chemistry | 2010 |
| Signal Amplification in a Microchannel from Redox Cycling with Varied Electroactive Configurations of an Individually Addressable Microband Electrode Array | Fritsch, Ingrid | Analytical Chemistry | 2010 |
| Redox-Magnetohydrodynamic Microfluidics Without Channels and Compatible with Electrochemical Detection Under Immunoassay Conditions. | Fritsch, Ingrid | Analytical Chemistry | 2010 |
| Signal Amplification in a Microchannel from Redox Cycling with Varied Electroactive Configurations of an Individually Addressable Microband Electrode Array | Gawley, Robert E. | Analytical Chemistry | 2010 |
| Magnetic Fields for Fluid Motion | Gerner, Matthew D. | Analytical Chemistry | 2010 |
| Signal Amplification in a Microchannel from Redox Cycling with Varied Electroactive Configurations of an Individually Addressable Microband Electrode Array | Lewis, Penny Marie | Analytical Chemistry | 2010 |
| Redox-Magnetohydrodynamic Microfluidics Without Channels and Compatible with Electrochemical Detection Under Immunoassay Conditions. | Nash, Christena Kayl | Analytical Chemistry | 2010 |
| Investigations of Redox Magnetohydrodynamic Fluid Flow At Microelectrode Arrays Using Microbeads | Weston, Melissa Christine | Analytical Chemistry | 2010 |
| Magnetic Fields for Fluid Motion | Weston, Melissa Christine | Analytical Chemistry | 2010 |
| Redox-Magnetohydrodynamic Microfluidics Without Channels and Compatible with Electrochemical Detection Under Immunoassay Conditions. | Weston, Melissa Christine | Analytical Chemistry | 2010 |
| Detection of in Vivo Matrix Metalloproteinase Activity Using Microdialysis Sampling and Liquid Chromatography/Mass Spectrometry | Stenken, Julie Ann | Analytical Chemistry | 2009 |
| In situ and multisubstrate detection of elastase enzymatic activity external to microdialysis sampling probes using LC-ESI-MS | Stenken, Julie Ann | Analytical Chemistry | 2008 |
| Detection of pathogens using luminescent Cdse/ZnS dendron nanocrystals and a porous membrane immunofilter | Peng, Xiaogang | Analytical Chemistry | 2007 |
| Interleukin-6 collection through long-term implanted microdialysis sampling probes in rat subcutaneous space | Stenken, Julie Ann | Analytical Chemistry | 2007 |
| Factors influencing redox magnetohydrodynamic-induced convection for enhancement of stripping analysis | Anderson, Emily Clark | Analytical Chemistry | 2006 |
| Feedback-independent Pt nanoelectrodes for shear force-based constant-distance mode scanning electrochemical microscopy | Anderson, Emily Clark | Analytical Chemistry | 2006 |
| Factors influencing redox magnetohydrodynamic-induced convection for enhancement of stripping analysis | Fritsch, Ingrid | Analytical Chemistry | 2006 |
| Feedback-independent Pt nanoelectrodes for shear force-based constant-distance mode scanning electrochemical microscopy | Fritsch, Ingrid | Analytical Chemistry | 2006 |
| Characterizing the phospholipid profiles in mammalian tissues by MALDI FTMS | Jones, Jeffrey James | Analytical Chemistry | 2006 |
| Characterizing the phospholipid profiles in mammalian tissues by MALDI FTMS | Wilkins, Charles L. | Analytical Chemistry | 2006 |
| Use of paired, bonded NdFeB magnets in redox magnetohydrodynamics | Arumugam, Prabhu Umashanker | Analytical Chemistry | 2005 |
| Use of paired, bonded NdFeB magnets in redox magnetohydrodynamics | Clark, Emily A. | Analytical Chemistry | 2005 |
| Use of paired, bonded NdFeB magnets in redox magnetohydrodynamics | Fritsch, Ingrid | Analytical Chemistry | 2005 |
| Analysis in ultrasmall volumes: Microdispensing of picoliter droplets and analysis without protection from evaporation | Aguilar, Zoraida P. | Analytical Chemistry | 2004 |
| Anodic stripping voltammetry enhancement by redox magnetohydrodynamics | Clark, Emily A. | Analytical Chemistry | 2004 |
| Investigation of MALDI-TOF and FT-MS techniques for analysis of Escherichia coli whole cells. (vol 75, pg 1340, 2003) | Fleming, Richard C. | Analytical Chemistry | 2004 |
| Analysis in ultrasmall volumes: Microdispensing of picoliter droplets and analysis without protection from evaporation | Fritsch, Ingrid | Analytical Chemistry | 2004 |
| Anodic stripping voltammetry enhancement by redox magnetohydrodynamics | Fritsch, Ingrid | Analytical Chemistry | 2004 |
| Investigation of MALDI-TOF and FT-MS techniques for analysis of Escherichia coli whole cells. (vol 75, pg 1340, 2003) | Jones, Jeffrey James | Analytical Chemistry | 2004 |
| Investigation of MALDI-TOF and FT-MS techniques for analysis of Escherichia coli whole cells. (vol 75, pg 1340, 2003) | Lay Jr, Jackson Oliver | Analytical Chemistry | 2004 |
| Investigation of MALDI-TOF and FT-MS techniques for analysis of Escherichia coli whole cells. (vol 75, pg 1340, 2003) | Stump, Michael J. | Analytical Chemistry | 2004 |
| Investigation of MALDI-TOF and FT-MS techniques for analysis of Escherichia coli whole cells. (vol 75, pg 1340, 2003) | Wilkins, Charles L. | Analytical Chemistry | 2004 |
| Immobilized enzyme-linked DNA-hybridization assay with electrochemical detection for Cryptosporidium parvum hsp70 mRNA | Aguilar, Zoraida P. | Analytical Chemistry | 2003 |
| Investigation of MALDI-TOF and FT-MS techniques for analysis of Escherichia coli whole cells | Fleming, Richard C. | Analytical Chemistry | 2003 |
| Immobilized enzyme-linked DNA-hybridization assay with electrochemical detection for Cryptosporidium parvum hsp70 mRNA | Fritsch, Ingrid | Analytical Chemistry | 2003 |
| Investigation of MALDI-TOF and FT-MS techniques for analysis of Escherichia coli whole cells | Jones, Jeffrey James | Analytical Chemistry | 2003 |
| Investigation of MALDI-TOF and FT-MS techniques for analysis of Escherichia coli whole cells | Lay Jr, Jackson Oliver | Analytical Chemistry | 2003 |
| Investigation of MALDI-TOF and FT-MS techniques for analysis of Escherichia coli whole cells | Stump, Michael J. | Analytical Chemistry | 2003 |
| Investigation of MALDI-TOF and FT-MS techniques for analysis of Escherichia coli whole cells | Wilkins, Charles L. | Analytical Chemistry | 2003 |
| Self-contained microelectrochemical immunoassay for small volumes using mouse IgG as a model system | Aguilar, Zoraida P. | Analytical Chemistry | 2002 |
| Self-contained microelectrochemical immunoassay for small volumes using mouse IgG as a model system | Fritsch, Ingrid | Analytical Chemistry | 2002 |
| Measurement of ultrasmall volumes using anodic stripping voltammetry | Fritsch, Ingrid | Analytical Chemistry | 2002 |
| Self-contained microelectrochemical immunoassay for small volumes using mouse IgG as a model system | Vandaveer IV, Walter Ralph | Analytical Chemistry | 2002 |
| Measurement of ultrasmall volumes using anodic stripping voltammetry | Vandaveer IV, Walter Ralph | Analytical Chemistry | 2002 |
| Miniaturization of enantioselectivce detectors | Bobbitt II, Donald R. | Analytical Chemistry | 2001 |
| Data mining with Spotfire Pro 4.0 | Wilkins, Charles L. | Analytical Chemistry | 2000 |
| Microfabricated recessed microdisk electrodes: Characterization in static and convective solutions | Fritsch, Ingrid | Analytical Chemistry | 1999 |
| Microfabricated recessed microdisk electrodes: Characterization in static and convective solutions | Henry, Charles Sherman | Analytical Chemistry | 1999 |
| Individually addressable, submicrometer band electrode arrays. 1. Fabrication from multilayered materials | Fritsch, Ingrid | Analytical Chemistry | 1998 |
| Individually addressable, submicrometer band electrode arrays. 2. Electrochemical characterization | Fritsch, Ingrid | Analytical Chemistry | 1998 |
| Individually addressable, submicrometer band electrode arrays. 1. Fabrication from multilayered materials | Nagale, Milind P. | Analytical Chemistry | 1998 |
| Individually addressable, submicrometer band electrode arrays. 2. Electrochemical characterization | Nagale, Milind P. | Analytical Chemistry | 1998 |
| Laser desorption Fourier transform mass spectrometry exchange studies of air-oxidized alkanethiol self-assembled monolayers on gold | Everett, William Russell | Analytical Chemistry | 1997 |
| Laser desorption Fourier transform mass spectrometry exchange studies of air-oxidized alkanethiol self-assembled monolayers on gold | Fritsch, Ingrid | Analytical Chemistry | 1997 |
| Laser desorption Fourier transform mass spectrometry exchange studies of air-oxidized alkanethiol self-assembled monolayers on gold | Wilkins, Charles L. | Analytical Chemistry | 1997 |
| Fabrication and characterization of sputtered-carbon microelectrode arrays | Fritsch, Ingrid | Analytical Chemistry | 1996 |
| Potential-Dependent Stability of Self-Assembled Organothiols on Gold Electrodes in Methylene-Chloride | Everett, William Russell | Analytical Chemistry | 1995 |
| Potential-Dependent Stability of Self-Assembled Organothiols on Gold Electrodes in Methylene-Chloride | Fritsch, Ingrid | Analytical Chemistry | 1995 |
| Dynamically Modified, Biospecific Optical Fiber Sensor for Riboflavin Binding-Protein Based on Hydrophobically Associated 3-Octylriboflavin | Bobbitt II, Donald R. | Analytical Chemistry | 1992 |
| Role of Electron-Donating Withdrawing Character, Ph, and Stoichiometry on the Chemiluminescent Reaction of Tris(2,2'-Bipyridyl)Ruthenium(III) with Amino-Acids | Bobbitt II, Donald R. | Analytical Chemistry | 1992 |
| Role of Electron-Donating Withdrawing Character, Ph, and Stoichiometry on the Chemiluminescent Reaction of Tris(2,2'-Bipyridyl)Ruthenium(III) with Amino-Acids | Brune, Stephen Newell | Analytical Chemistry | 1992 |
| Relationships between Measured Potential and Concentrations of Redox Centers in Polymer Networks | Fritsch, Ingrid | Analytical Chemistry | 1992 |
| Use of Microelectrode Arrays to Determine Concentration Profiles of Redox Centers in Polymer-Films | Fritsch, Ingrid | Analytical Chemistry | 1992 |
| Dynamically Modified, Biospecific Optical Fiber Sensor for Riboflavin Binding-Protein Based on Hydrophobically Associated 3-Octylriboflavin | Ogasawara, Faye Kayoko | Analytical Chemistry | 1992 |
| Dynamically Modified, Biospecific Optical Fiber Sensor for Riboflavin Binding-Protein Based on Hydrophobically Associated 3-Octylriboflavin | Wang, Yunlong | Analytical Chemistry | 1992 |
| Direct Monitoring of Enzyme-Catalyzed Reactions Via Laser-Based Polarimetry | Bobbitt II, Donald R. | Analytical Chemistry | 1990 |
| Direct Monitoring of Enzyme-Catalyzed Reactions Via Laser-Based Polarimetry | Rice, Patrick Dale | Analytical Chemistry | 1990 |
| Indirect Differential Thermal Lens Detection for the Reversed-Phase Separation of Underivatized Fatty-Acids | Bobbitt II, Donald R. | Analytical Chemistry | 1989 |
| Indirect Differential Thermal Lens Detection for the Reversed-Phase Separation of Underivatized Fatty-Acids | Erskine, Steven Randall | Analytical Chemistry | 1989 |
| Ion-Fraction Determination by Laser-Enhanced Ionization Spectrometry | Green, Robert B. | Analytical Chemistry | 1985 |
| Sample Desolvation for Laser-Enhanced Ionization Spectrometry | Green, Robert B. | Analytical Chemistry | 1985 |
| Ion-Fraction Determination by Laser-Enhanced Ionization Spectrometry | Hall, Joan Elisabeth | Analytical Chemistry | 1985 |
| Sample Desolvation for Laser-Enhanced Ionization Spectrometry | Hall, Joan Elisabeth | Analytical Chemistry | 1985 |
| Laser-Enhanced Ionization Spectrometry with a Total Consumption Burner | Green, Robert B. | Analytical Chemistry | 1983 |
| Optogalvanic Detection of Molecular Absorption | Green, Robert B. | Analytical Chemistry | 1983 |
| Lasers - Practical Detectors for Chromatography | Green, Robert B. | Analytical Chemistry | 1983 |
| Pulsed Signal Collection for Laser-Enhanced Ionization Spectrometry | Green, Robert B. | Analytical Chemistry | 1983 |
| Laser-Enhanced Ionization Spectrometry with a Total Consumption Burner | Hall, Joan Elisabeth | Analytical Chemistry | 1983 |
| Optogalvanic Detection of Molecular Absorption | Nippoldt, Mark A. | Analytical Chemistry | 1983 |
| Pulsed Signal Collection for Laser-Enhanced Ionization Spectrometry | Nippoldt, Mark A. | Analytical Chemistry | 1983 |
| Laser-Enhanced Ionization Spectrometry | Green, Robert B. | Analytical Chemistry | 1982 |
| Helium-Neon Laser Intra-Cavity Absorption Detector for Gas-Chromatography | Green, Robert B. | Analytical Chemistry | 1982 |
| Helium-Neon Laser Intra-Cavity Absorption Detector for Gas-Chromatography | Paul, David W. | Analytical Chemistry | 1982 |
| Acid Effects in Laser-Enhanced Ionization Spectrometry | Green, Robert B. | Analytical Chemistry | 1981 |
| Electrode Positioner for Laser-Enhanced Ionization Spectrometry | Green, Robert B. | Analytical Chemistry | 1981 |
| Acid Effects in Laser-Enhanced Ionization Spectrometry | Trask, Terry O. | Analytical Chemistry | 1981 |
| Evaluation of Plate Electrodes for Laser-Enhanced Ionization Spectrometry | Green, Robert B. | Analytical Chemistry | 1980 |
| Apparatus for Vacuum Sublimation | Noyce, William K. | Analytical Chemistry | 1950 |
| Modified Dumas Nitrogen Apparatus | Noyce, William K. | Analytical Chemistry | 1949 |