Electrochemical immunosensors–a powerful tool for analytical applications FS Felix, L Angnes Biosensors and Bioelectronics 102, 470-478, 2018 | 534 | 2018 |
Miniaturized reference electrodes with microporous polymer junctions JJ Pedrotti, L Angnes, IGR Gutz Electroanalysis 8 (7), 673-675, 1996 | 393 | 1996 |
Performance of screen-printed carbon electrodes fabricated from different carbon inks J Wang, B Tian, VB Nascimento, L Angnes Electrochimica Acta 43 (23), 3459-3465, 1998 | 322 | 1998 |
Metal-dispersed carbon paste electrodes J Wang, N Naser, L Angnes, H Wu, L Chen Analytical Chemistry 64 (11), 1285-1288, 1992 | 222 | 1992 |
Gold electrodes from recordable CDs L Angnes, EM Richter, MA Augelli, GH Kume Analytical chemistry 72 (21), 5503-5506, 2000 | 219 | 2000 |
Determination of the refractive index increment (dn/dc) of molecule and macromolecule solutions by surface plasmon resonance T Tumolo, L Angnes, MS Baptista Analytical biochemistry 333 (2), 273-279, 2004 | 201 | 2004 |
Batch injection analysis: An almost unexplored powerful tool MSM Quintino, L Angnes Electroanalysis: An International Journal Devoted to Fundamental and …, 2004 | 193 | 2004 |
Single‐step reagentless laser scribing fabrication of electrochemical paper‐based analytical devices WR de Araujo, CMR Frasson, WA Ameku, JR Silva, L Angnes, ... Angewandte Chemie 129 (47), 15309-15313, 2017 | 183 | 2017 |
Flow injection analysis-amperometric determination of ascorbic and uric acids in urine using arrays of gold microelectrodes modified by electrodeposition of palladium RC Matos, MA Augelli, CL Lago, L Angnes Analytica Chimica Acta 404 (1), 151-157, 2000 | 178 | 2000 |
Trimetallic oxides/hydroxides as hybrid supercapacitor electrode materials: a review JM Gonçalves, MI da Silva, HE Toma, L Angnes, PR Martins, K Araki Journal of Materials Chemistry A 8 (21), 10534-10570, 2020 | 177 | 2020 |
Miniaturized glucose sensors based on electrochemical codeposition of rhodium and glucose oxidase onto carbon-fiber electrodes J Wang, L Angnes Analytical Chemistry 64 (4), 456-459, 1992 | 152 | 1992 |
Wearable electrochemical sensors for forensic and clinical applications PC Ferreira, VN Ataide, CLS Chagas, L Angnes, WKT Coltro, ... TrAC Trends in Analytical Chemistry 119, 115622, 2019 | 148 | 2019 |
Recent trends and perspectives in electrochemical sensors based on MOF-derived materials JM Gonçalves, PR Martins, DP Rocha, TA Matias, MSS Juliao, ... Journal of Materials Chemistry C 9 (28), 8718-8745, 2021 | 144 | 2021 |
Electrochemistry of a tetraruthenated cobalt porphyrin and its use in modified electrodes as sensors of reducing analytes K Araki, L Angnes, CMN Azevedo, HE Toma Journal of Electroanalytical Chemistry 397 (1-2), 205-210, 1995 | 133 | 1995 |
Eletrodos fabricados por" silk-screen" VB Nascimento, L Angnes Química Nova 21, 614-629, 1998 | 125 | 1998 |
Electrochemical (bio) sensors enabled by fused deposition modeling-based 3D printing: A guide to selecting designs, printing parameters, and post-treatment protocols JS Stefano, C Kalinke, RG da Rocha, DP Rocha, VAOP da Silva, ... Analytical Chemistry 94 (17), 6417-6429, 2022 | 121 | 2022 |
Vanadium-containing electro and photocatalysts for the oxygen evolution reaction: a review JM Gonçalves, MI da Silva, L Angnes, K Araki Journal of Materials Chemistry A 8 (5), 2171-2206, 2020 | 116 | 2020 |
Carbon film resistor electrode for amperometric determination of acetaminophen in pharmaceutical formulations FS Felix, CMA Brett, L Angnes Journal of pharmaceutical and biomedical analysis 43 (5), 1622-1627, 2007 | 115 | 2007 |
Modified microelectrodes and multivariate calibration for flow injection amperometric simultaneous determination of ascorbic acid, dopamine, epinephrine and dipyrone RC Matos, L Angnes, MCU Araújo, TCB Saldanha Analyst 125 (11), 2011-2015, 2000 | 115 | 2000 |
Amperometric detection of nitrite and nitrate at tetraruthenated porphyrin-modified electrodes in a continuous-flow assembly JRC da Rocha, L Angnes, M Bertotti, K Araki, HE Toma Analytica Chimica Acta 452 (1), 23-28, 2002 | 102 | 2002 |