Giant thermoelectric effect from transmission supernodes JP Bergfield, MA Solis, CA Stafford ACS nano 4 (9), 5314-5320, 2010 | 202 | 2010 |
Thermoelectric signatures of coherent transport in single-molecule heterojunctions JP Bergfield, CA Stafford Nano letters 9 (8), 3072-3076, 2009 | 197 | 2009 |
Many-body theory of electronic transport in single-molecule heterojunctions JP Bergfield, CA Stafford Physical Review B 79 (24), 245125, 2009 | 111 | 2009 |
Forty years of molecular electronics: Non‐equilibrium heat and charge transport at the nanoscale JP Bergfield, MA Ratner physica status solidi (b) 250 (11), 2249-2266, 2013 | 100 | 2013 |
Bethe ansatz approach to the kondo effect within density-functional theory JP Bergfield, ZF Liu, K Burke, CA Stafford Physical review letters 108 (6), 066801, 2012 | 97 | 2012 |
Novel quantum interference effects in transport through molecular radicals JP Bergfield, GC Solomon, CA Stafford, MA Ratner Nano letters 11 (7), 2759-2764, 2011 | 77 | 2011 |
When “small” terms matter: Coupled interference features in the transport properties of cross-conjugated molecules GC Solomon, JP Bergfield, CA Stafford, MA Ratner Beilstein journal of nanotechnology 2 (1), 862-871, 2011 | 61 | 2011 |
Local temperature of out-of-equilibrium quantum electron systems J Meair, JP Bergfield, CA Stafford, P Jacquod Physical Review B 90 (3), 035407, 2014 | 49 | 2014 |
Probing Maxwell’s demon with a nanoscale thermometer JP Bergfield, SM Story, RC Stafford, CA Stafford ACS nano 7 (5), 4429-4440, 2013 | 47 | 2013 |
Accuracy of density functionals for molecular electronics: The Anderson junction ZF Liu, JP Bergfield, K Burke, CA Stafford Physical Review B 85 (15), 155117, 2012 | 34 | 2012 |
Harnessing Quantum Interference in Molecular Dielectric Materials JP Bergfield, HM Heitzer, CV Dyck, TJ Marks, MA Ratner ACSNano, 2015 | 29 | 2015 |
Tunable quantum temperature oscillations in graphene nanostructures JP Bergfield, MA Ratner, CA Stafford, M Di Ventra Physical Review B 91 (12), 125407, 2015 | 25 | 2015 |
Effective field theory of interacting electrons JD Barr, CA Stafford, JP Bergfield Physical Review B 86 (11), 115403, 2012 | 19 | 2012 |
ACS Nano 4, 5314 (2010) JP Bergfield, MA Solis, CA Stafford CrossRef| PubMed| CAS| Web of Science® Times Cited 7, 0 | 19 | |
Quantum Interference Enhanced Chemical Responsivity in Single‐Molecule Dithienoborepin Junctions M Baghernejad, C Van Dyck, J Bergfield, DR Levine, A Gubicza, JD Tovar, ... Chemistry–A European Journal 25 (66), 15141-15146, 2019 | 18 | 2019 |
Thermoelectric corrections to quantum voltage measurement JP Bergfield, CA Stafford Physical Review B 90 (23), 235438, 2014 | 17 | 2014 |
The number of transmission channels through a single-molecule junction JP Bergfield, JD Barr, CA Stafford ACS nano 5 (4), 2707-2714, 2011 | 16 | 2011 |
Coherent destruction of Coulomb blockade peaks in molecular junctions JP Bergfield, P Jacquod, CA Stafford Physical Review B 82 (20), 205405, 2010 | 15 | 2010 |
Transmission eigenvalue distributions in highly conductive molecular junctions JP Bergfield, JD Barr, CA Stafford Beilstein journal of nanotechnology 3 (1), 40-51, 2012 | 13 | 2012 |
Signatures of plexcitonic states in molecular electroluminescence JP Bergfield, JR Hendrickson Scientific reports 8 (1), 2314, 2018 | 6 | 2018 |