Dual-electrode electrochemical detection for poly (dimethylsiloxane)-fabricated capillary electrophoresis microchips RS Martin, AJ Gawron, SM Lunte, CS Henry Analytical Chemistry 72 (14), 3196-3202, 2000 | 451 | 2000 |
3D printed microfluidic devices with integrated versatile and reusable electrodes JL Erkal, A Selimovic, BC Gross, SY Lockwood, EL Walton, S McNamara, ... Lab on a Chip 14 (12), 2023-2032, 2014 | 351 | 2014 |
Microchip capillary electrophoresis/electrochemistry NA Lacher, KE Garrison, RS Martin, SM Lunte Electrophoresis 22 (12), 2526-2536, 2001 | 346 | 2001 |
3D-printed microfluidic devices: fabrication, advantages and limitations—a mini review C Chen, BT Mehl, AS Munshi, AD Townsend, DM Spence, RS Martin Analytical Methods 8 (31), 6005-6012, 2016 | 304 | 2016 |
A 3D printed fluidic device that enables integrated features KB Anderson, SY Lockwood, RS Martin, DM Spence Analytical chemistry 85 (12), 5622-5626, 2013 | 278 | 2013 |
In-channel electrochemical detection for microchip capillary electrophoresis using an electrically isolated potentiostat RS Martin, KL Ratzlaff, BH Huynh, SM Lunte Analytical chemistry 74 (5), 1136-1143, 2002 | 234 | 2002 |
Recent developments in amperometric detection for microchip capillary electrophoresis WR Vandaveer IV, SA Pasas, RS Martin, SM Lunte Electrophoresis 23 (21), 3667-3677, 2002 | 217 | 2002 |
Microchip-based ethanol/oxygen biofuel cell CM Moore, SD Minteer, RS Martin Lab on a Chip 5 (2), 218-225, 2005 | 208 | 2005 |
Fabrication and evaluation of a carbon‐based dual‐electrode detector for poly (dimethylsiloxane) electrophoresis chips AJ Gawron, RS Martin, SM Lunte Electrophoresis 22 (2), 242-248, 2001 | 180 | 2001 |
Carbon paste-based electrochemical detectors for microchip capillary electrophoresis/electrochemistry RS Martin, AJ Gawron, BA Fogarty, FB Regan, E Dempsey, SM Lunte Analyst 126 (3), 277-280, 2001 | 176 | 2001 |
Development of a microfabricated palladium decoupler/electrochemical detector for microchip capillary electrophoresis using a hybrid glass/poly (dimethylsiloxane) device NA Lacher, SM Lunte, RS Martin Analytical chemistry 76 (9), 2482-2491, 2004 | 158 | 2004 |
Review of 3D cell culture with analysis in microfluidic systems AD Castiaux, DM Spence, RS Martin Analytical Methods 11 (33), 4220-4232, 2019 | 115 | 2019 |
Indirect measurement of nitric oxide production by monitoring nitrate and nitrite using microchip electrophoresis with electrochemical detection R Kikura-Hanajiri, RS Martin, SM Lunte Analytical chemistry 74 (24), 6370-6377, 2002 | 115 | 2002 |
Microchip electrophoretic separation systems for biomedical and pharmaceutical analysis AJ Gawron, RS Martin, SM Lunte European journal of pharmaceutical sciences 14 (1), 1-12, 2001 | 106 | 2001 |
On-line coupling of microdialysis sampling with microchip-based capillary electrophoresis BH Huynh, BA Fogarty, RS Martin, SM Lunte Analytical chemistry 76 (21), 6440-6447, 2004 | 101 | 2004 |
PolyJet 3D-printed enclosed microfluidic channels without photocurable supports AD Castiaux, CW Pinger, EA Hayter, ME Bunn, RS Martin, DM Spence Analytical chemistry 91 (10), 6910-6917, 2019 | 93 | 2019 |
Integration of microdialysis sampling and microchip electrophoresis with electrochemical detection LC Mecker, RS Martin Analytical chemistry 80 (23), 9257-9264, 2008 | 88 | 2008 |
Deformation-induced release of ATP from erythrocytes in a poly (dimethylsiloxane)-based microchip with channels that mimic resistance vessels AK Price, DJ Fischer, RS Martin, DM Spence Analytical chemistry 76 (16), 4849-4855, 2004 | 88 | 2004 |
A review of electrospinning manipulation techniques to direct fiber deposition and maximize pore size KP Feltz, EAG Kalaf, C Chen, RS Martin, SA Sell Electrospinning 1 (1), 46-61, 2017 | 86 | 2017 |
Amperometric determination of nitric oxide derived from pulmonary artery endothelial cells immobilized in a microchip channel DM Spence, NJ Torrence, ML Kovarik, RS Martin Analyst 129 (11), 995-1000, 2004 | 83 | 2004 |