Evolution of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) as coronavirus disease 2019 (COVID-19) pandemic: A global health emergency T Acter, N Uddin, J Das, A Akhter, TR Choudhury, S Kim Science of the Total Environment 730, 138996, 2020 | 640 | 2020 |
A nanocatalyst-based assay for proteins: DNA-free ultrasensitive electrochemical detection using catalytic reduction of p-nitrophenol by gold-nanoparticle labels J Das, MA Aziz, H Yang Journal of the American Chemical Society 128 (50), 16022-16023, 2006 | 337 | 2006 |
An electrochemical clamp assay for direct, rapid analysis of circulating nucleic acids in serum J Das, I Ivanov, L Montermini, J Rak, EH Sargent, SO Kelley Nature chemistry 7 (7), 569-575, 2015 | 255 | 2015 |
An ultrasensitive universal detector based on neutralizer displacement J Das, KB Cederquist, AA Zaragoza, PE Lee, EH Sargent, SO Kelley Nature chemistry 4 (8), 642-648, 2012 | 217 | 2012 |
Electrochemical immunosensor using p-aminophenol redox cycling by hydrazine combined with a low background current J Das, K Jo, JW Lee, H Yang Analytical chemistry 79 (7), 2790-2796, 2007 | 187 | 2007 |
Detection of SARS-CoV-2 Viral Particles Using Direct, Reagent-Free Electrochemical Sensing H Yousefi, A Mahmud, D Chang, J Das, S Gomis, JB Chen, H Wang, ... Journal of the American Chemical Society 143 (4), 1722-1727, 2021 | 178 | 2021 |
DNA Clutch Probes for Circulating Tumor DNA Analysis J Das, I Ivanov, EH Sargent, SO Kelley Journal of the American Chemical Society, 2016 | 169 | 2016 |
Protein detection using arrayed microsensor chips: tuning sensor footprint to achieve ultrasensitive readout of CA-125 in serum and whole blood J Das, SO Kelley Analytical chemistry 83 (4), 1167-1172, 2011 | 149 | 2011 |
Solution-based circuits enable rapid and multiplexed pathogen detection B Lam, J Das, RD Holmes, L Live, A Sage, EH Sargent, SO Kelley Nature Communications 4 (2001), 1-8, 2013 | 140 | 2013 |
Reagentless biomolecular analysis using a molecular pendulum J Das, JB Gomis, Surath, Chen, H Yousofi, A Mahmud, S Ahmed, W Zhou, ... Nature Chemistry, 2021 | 85 | 2021 |
Nanocatalyst-based assay using DNA-conjugated Au nanoparticles for electrochemical DNA detection T Selvaraju, J Das, K Jo, K Kwon, CH Huh, TK Kim, H Yang Langmuir 24 (17), 9883-9888, 2008 | 84 | 2008 |
High‐performance nucleic acid sensors for liquid biopsy applications J Das, SO Kelley Angewandte Chemie International Edition 59 (7), 2554-2564, 2020 | 82 | 2020 |
Tuning the bacterial detection sensitivity of nanostructured microelectrodes J Das, SO Kelley Analytical chemistry 85 (15), 7333-7338, 2013 | 71 | 2013 |
Combinatorial Probes for High‐Throughput Electrochemical Analysis of Circulating Nucleic Acids in Clinical Samples J Das, I Ivanov, TS Safaei, EH Sargent, SO Kelley Angewandte Chemie 130 (14), 3773-3778, 2018 | 68 | 2018 |
High-curvature nanostructuring enhances probe display for biomolecular detection P De Luna, SS Mahshid, J Das, B Luan, EH Sargent, SO Kelley, R Zhou Nano letters 17 (2), 1289-1295, 2017 | 68 | 2017 |
Strategies for Biomolecular Analysis and Continuous Physiological Monitoring A Clifford, J Das, H Yousefi,, A Mahmud, JB Chen, SO Kelley Journal of the American Chemical Society, 2021 | 65 | 2021 |
Three-dimensional nanostructured architectures enable efficient neural differentiation of mesenchymal stem cells via mechanotransduction M Poudineh, Z Wang, M Labib, M Ahmadi, L Zhang, J Das, S Ahmed, ... Nano letters 18 (11), 7188-7193, 2018 | 65 | 2018 |
Ultrasensitive electrochemical immunosensing using magnetic beads and gold nanocatalysts T Selvaraju, J Das, SW Han, H Yang Biosensors and Bioelectronics 23 (7), 932-938, 2008 | 63 | 2008 |
Proximal bacterial lysis and detection in nanoliter wells using electrochemistry JD Besant, J Das, EH Sargent, SO Kelley ACS nano 7 (9), 8183-8189, 2013 | 52 | 2013 |
Enhancement of electrocatalytic activity of DNA-conjugated gold nanoparticles and its application to DNA detection J Das, H Yang The Journal of Physical Chemistry C 113 (15), 6093-6099, 2009 | 44 | 2009 |