Publications
18. Watts, B.P.; Barbee, C.H.; and Tvrdy, K.; “Exploiting the Physiochemical Interactions between Single-Walled Carbon Nanotubes and Hydrogel Microspheres to Afford Chirally Pure Nanotubes” ACS Appl. Nano Mater. (2019) 2: 3615-3625
17. Hankiewicz, J.C.; Stoll, J.A.; Stroud, J.; Davidson, J.; Livesey, K.L.; Tvrdy, K; Roshko, A.; Russek, S.E.; Stupic, K.; Bilski, P.; Camoley, R.E.; and Celinski, Z.J.; “Nano-sized Ferrite Particles for Magnetic Resonance Imaging Thermometry” J. Magn. Magn. Mater. (2019) 469: 550-557
16. Weeks, N.; and Tvrdy, K.; “Atomistic Modeling of Quantum Dots at Experimentally Relevant Scales Using Charge Equilibration” J. Phys. Chem. A (2017) 121: 9346-9357
15. Son, Y.; Wang, Q.H.; Paulson, J.A.; Shih, C.J.; Rajan, A.; Tvrdy, K.; Kim, S.; Alfeeli, B.; Braatz, R.; and Strano, M.S.; “Layer Number Dependence of MoS2 Photoconductivity Using Photocurrent Spectral Atomic Force Microscopic Imaging” ACS Nano (2015) 9: 2843-2855
14. Dyatlova, O.A.; Koehler, C.; Vogel, P.; Malic, E.; Jain, R.M.; Tvrdy, K.; Strano, M.S.; Knorr, A.; and Woggon, A.; “Relaxation Dynamics of carbon nanotubes of enriched chiralities” Phys. Rev. B (2014) 90: 155402
13. McNicolas, T.P.; Cantu, V.; Hilmer, A.J.; Tvrdy, K.; Jain, R.M.; Han, R.; Bellisario, D.; Ahn, J.; Barone, P.; Mu, B.; and Strano, M.S. “Magnetoadsorptive Particles Enabling the Centrifugation-Free, Preparative-Scale Separation and Sorting of Single-Walled Carbon Nanotubes” Particle & Particle Systems Characterization (2014) 31: 1097-1104
12. Jain, R.M., Tvrdy, K.; Han, R.; Ulissi, Z., and Strano, M.S. “Quantitative Theory of Adsorptive Separation for the Electronic Sorting of Single-Walled Carbon Nanotubes” ACS Nano (2014) 8: 3367-3379
Prior to UCCS
11. Reuel, N.F.; Grassbaugh, B.; Kruss, S.; Mundy, J.Z.; Opel, C.; Ogunniyi, A.O.; Egodage, K.; Wahl, R.; Helk, B.; Zhang, J.; Kalcioglu, Z.I.; Tvrdy, K.T.; Bellisario, D.O.; Mu, B.; Blake, S.S.; Van Vilet, K.J.; Love, J.C.; Wittrup, K.D.; and Strano, M.S. “Emergent Properties of Nanosensor Arrays: Applications for Monitoring IgG Affiniity Distributions, Weakly Affined Hypermannosylation, and Colony Selection for Biomanufancuting” ACS Nano (2013) 7: 7472-7482
10. Hilmer, A.J.; Tvrdy, K; Zhang, J.Q.; and Strano, M.S. “Charge Transfer Structure-Reactivity Dependence of Fullerene-Single-Walled Carbon Nanotube Heterojunctions” J. Am. Chem. Soc. (2013) 135: 11901-11910
9. Tvrdy, K.; Jain, R.M.; Han, R.; Hilmer, A.J.; McNicholas, T.P.; and Strano, M.S. “A Kinetic Model for the Deterministic Prediction of Gel-Based Single-Chirality Single-Walled Carbon Nanotube Separation” ACS Nano (2013) 7: 1779-1789
8. Jain, R.M.; Howden, R.; Tvrdy, K.; Shimizu, S.; Hilmer, A.J.; McNicholas, T.P.; Gleason, K.K. and Strano, M.S. “Polymer-Free Near-Infrared Photovoltaics with Single Chirality (6,5) Semiconducting Carbon Nanotube Active Layers” Adv. Mater. (2012) 24: 4436-4439
7. Tvrdy, K. and Strano, M.S. “Nanoimaging, Image Contrast Using Time” Nat. Nano. (2012) 7: 8-9
6. Pernik, D.R.; Tvrdy, K.; Radich, J.G. and Kamat, P.V. “Tracking the Adsorption and Electron Injection Rates of CdSe Quantum Dots on TiO2: Linked Versus Direct Attachment” J. Phys. Chem. C (2011) 115: 13511-13519
5. Tvrdy, K.; Frantsuzov, P.A. and Kamat, P.V. “Photoinduced Electron Transfer from Semiconductor Quantum Dots to Metal Oxide Nanoparticles”Proc. Natl. Acad. Sci. U. S. A.(2011) 108: 29-34
4. Kamat, P.V.; Tvrdy, K; Baker, D.R. and Radich J.G. “Beyond Photovoltaics: Semiconductor Nanoarchitechtures for Liquid Junction Solar Cells”Chem. Rev. (2010) 110: 6664-6688
3. Chakrapani, V.; Tvrdy, K and Kamat, P.V. “Modulation of Electron Injection in CdSe-TiO2 System through Medium Alkalinity” J. Am. Chem. Soc. (2010) 132: 1228-1229
2. Tvrdy, K. and Kamat, P.V. “Substrate Driven Photochemistry of CdSe Quantum Dot Films: Charge Injection and Irreversible Transformations on Oxide Surfaces” J. Phys. Chem. A (2009) 113: 3765-3772
1. Konkanand, A.; Tvrdy, K.; Takechi, K.; Kuno, M. and Kamat, P.V. “Quantum Dot Solar Cells. Tuning Photoresponse through Size and Shape Control of CdSe—TiO2 Architecture” J. Am. Chem. Soc. (2008) 130: 4007-4015