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Jiwoong Park

Chemistry and Chemical Biology Cornell University, Ithaca, NY, United States 
molecule-like nanostructures, including carbon nanotubes and graphene
"Jiwoong Park"

Mean distance: 9.62


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Paul L. McEuen grad student 2003 UC Berkeley (Physics Tree)
 (Electron transport in single molecule transistors.)


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Carlos S. Ruiz-Vargas grad student 2013 Cornell
Adam W. Tsen grad student 2013 Cornell
Joonki Suh post-doc 2016- Cornell (Physics Tree)
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Deb P, Cao MC, Han Y, et al. (2020) Imaging Polarity in Two Dimensional Materials by Breaking Friedel's Law. Ultramicroscopy. 215: 113019
Surface LE, Burrow DT, Li J, et al. (2020) regulates the action of nitrogen-containing bisphosphonates on bone. Science Translational Medicine. 12
Gao H, Suh J, Cao MC, et al. (2020) Tuning Electrical Conductance of MoS Monolayers through Substitutional Doping. Nano Letters
Wood RE, Lloyd LT, Mujid F, et al. (2020) Evidence for Dominance of Carrier-Induced Bandgap Renormalization over Biexciton Formation in Cryogenic Ultrafast Experiments on MoS2 Monolayers. The Journal of Physical Chemistry Letters
Zhong Y, Cheng B, Park C, et al. (2019) Wafer-scale synthesis of monolayer two-dimensional porphyrin polymers for hybrid superlattices. Science (New York, N.Y.)
Lee KH, Chakram S, Kim SE, et al. (2019) Two-Dimensional Material Tunnel Barrier for Josephson Junctions and Superconducting Qubits. Nano Letters
Xu W, Li T, Qin Z, et al. (2019) Reversible MoS2 Origami with Spatially Resolved and Reconfigurable Photosensitivity. Nano Letters
Reynolds M, McGill K, Wang M, et al. (2019) Capillary Origami with Atomically Thin Membranes. Nano Letters
Patel H, Huang L, Kim CJ, et al. (2019) Stacking angle-tunable photoluminescence from interlayer exciton states in twisted bilayer graphene. Nature Communications. 10: 1445
Jiang Y, Chen Z, Han Y, et al. (2018) Electron ptychography of 2D materials to deep sub-ångström resolution. Nature. 559: 343-349
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