Molecular-basis of single-walled carbon nanotube recognition by single-stranded DNA D Roxbury, J Mittal, A Jagota Nano letters 12 (3), 1464-1469, 2012 | 102 | 2012 |
A carbon nanotube reporter of microRNA hybridization events in vivo JD Harvey, PV Jena, H Baker, GH Zerze, RM Williams, TV Galassi, ... Nature Biomedical Engineering 1, 0041, 2017 | 101 | 2017 |
Recognition ability of DNA for carbon nanotubes correlates with their binding affinity D Roxbury, X Tu, M Zheng, A Jagota Langmuir 27 (13), 8282-8293, 2011 | 90 | 2011 |
Hyperspectral Microscopy of Near-Infrared Fluorescence Enables 17-Chirality Carbon Nanotube Imaging. D Roxbury, PV Jena, RM Williams, B Enyedi, P Niethammer, S Marcet, ... Scientific reports 5, 14167-14167, 2015 | 89 | 2015 |
Sequence-specific self-stitching motif of short single-stranded DNA on a single-walled carbon nanotube D Roxbury, A Jagota, J Mittal Journal of the American Chemical Society 133 (34), 13545-13550, 2011 | 80 | 2011 |
Quantitative self-assembly prediction yields targeted nanomedicines Y Shamay, J Shah, M Işık, A Mizrachi, J Leibold, DF Tschaharganeh, ... Nature materials 17 (4), 361-368, 2018 | 56 | 2018 |
DNA conjugated SWCNTs enter endothelial cells via Rac1 mediated macropinocytosis S Bhattacharya, D Roxbury, X Gong, D Mukhopadhyay, A Jagota Nano letters 12 (4), 1826-1830, 2012 | 48 | 2012 |
A Carbon Nanotube Optical Reporter Maps Endolysosomal Lipid Flux PV Jena, D Roxbury, TV Galassi, L Akkari, CP Horoszko, DB Iaea, ... ACS Nano 11 (11), 10689-10703, 2017 | 46 | 2017 |
Structural characteristics of oligomeric DNA strands adsorbed onto single-walled carbon nanotubes D Roxbury, A Jagota, J Mittal The Journal of Physical Chemistry B 117 (1), 132-140, 2013 | 46 | 2013 |
Cell Membrane Proteins Modulate the Carbon Nanotube Optical Bandgap via Surface Charge Accumulation D Roxbury, PV Jena, Y Shamay, CP Horoszko, DA Heller ACS Nano 10 (1), 499-506, 2016 | 44 | 2016 |
A Carbon Nanotube Optical Sensor Reports Nuclear Entry via a Noncanonical Pathway J Budhathoki-Uprety, RE Langenbacher, PV Jena, D Roxbury, DA Heller ACS Nano 11 (4), 3875, 2017 | 43 | 2017 |
DNA–carbon nanotube complexation affinity and photoluminescence modulation are independent PV Jena, MM Safaee, DA Heller, D Roxbury ACS applied materials & interfaces 9 (25), 21397-21405, 2017 | 41 | 2017 |
An optical nanoreporter of endolysosomal lipid accumulation reveals enduring effects of diet on hepatic macrophages in vivo TV Galassi, PV Jena, J Shah, G Ao, E Molitor, Y Bram, A Frankel, J Park, ... Science translational medicine 10 (461), eaar2680, 2018 | 40 | 2018 |
Helical polycarbodiimide cloaking of carbon nanotubes enables inter-nanotube exciton energy transfer modulation J Budhathoki-Uprety, PV Jena, D Roxbury, DA Heller Journal of the American Chemical Society 136 (44), 15545-15550, 2014 | 36 | 2014 |
Molecular simulation of DNA β-sheet and β-barrel structures on graphite and carbon nanotubes D Roxbury, S Manohar, A Jagota The Journal of Physical Chemistry C 114 (31), 13267-13276, 2010 | 32 | 2010 |
Photoluminescent carbon nanotubes interrogate the permeability of multicellular tumor spheroids PV Jena, Y Shamay, J Shah, D Roxbury, N Paknejad, DA Heller Carbon 97, 99-109, 2016 | 31 | 2016 |
Review—Progress toward Applications of Carbon Nanotube Photoluminescence PV Jena, TV Galassi, D Roxbury, DA Heller ECS J. Solid State Sci. Technol. 6 (6), M3075-M3077, 2017 | 20 | 2017 |
Single Nanotube Spectral Imaging To Determine Molar Concentrations of Isolated Carbon Nanotube Species TV Galassi, V Jena, Prakrit, D Roxbury, DA Heller Analytical Chemistry 89 (2), 1073-1077, 2017 | 15 | 2017 |
Biomolecular Functionalization of a Nanomaterial To Control Stability and Retention within Live Cells M Gravely, MM Safaee, D Roxbury Nano Letters 19 (9), 6203-6212, 2019 | 13 | 2019 |
DNA Sequence Mediates Apparent Length Distribution in Single-Walled Carbon Nanotubes MM Safaee, M Gravely, C Rocchio, M Simmeth, D Roxbury ACS Appl. Mater. Interfaces 11 (2), 2225-2233, 2019 | 11 | 2019 |