Changwook Jeong, Ph.D.

2012 Electrical and Computer Engineering Purdue University, West Lafayette, IN, United States 
Electronics and Electrical Engineering, Condensed Matter Physics
"Changwook Jeong"


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Mark S. Lundstrom grad student 2012 Purdue
 (Landauer approach to thermoelectrics.)
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Das SR, Sadeque S, Jeong C, et al. (2016) Copercolating Networks: An Approach for Realizing High-Performance Transparent Conductors using Multicomponent Nanostructured Networks Nanophotonics. 5: 180-195
Maassen J, Jeong C, Baraskar A, et al. (2013) Full band calculations of the intrinsic lower limit of contact resistivity Applied Physics Letters. 102
Chen R, Das SR, Jeong C, et al. (2013) Co-percolating graphene-wrapped silver nanowire network for high performance, highly stable, transparent conducting electrodes Advanced Functional Materials. 23: 5150-5158
Jeong C, Kim R, Lundstrom MS. (2012) On the best bandstructure for thermoelectric performance: A Landauer perspective Journal of Applied Physics. 111
Jeong C, Lundstrom M. (2012) Analysis of thermal conductance of ballistic point contacts Applied Physics Letters. 100
Jeong C, Datta S, Lundstrom M. (2012) Thermal conductivity of bulk and thin-film silicon: A Landauer approach Journal of Applied Physics. 111
Paul A, Salamat S, Jeong C, et al. (2012) An efficient algorithm to calculate intrinsic thermoelectric parameters based on Landauer approach Journal of Computational Electronics. 11: 56-66
Jeong C, Nair P, Khan M, et al. (2011) Prospects for nanowire-doped polycrystalline graphene films for ultratransparent, highly conductive electrodes. Nano Letters. 11: 5020-5
Jeong C, Klimeck G, Lundstrom M. (2011) Computational study of the electronic performance of cross-plane superlattice Peltier devices Materials Research Society Symposium Proceedings. 1314: 13-18
Jeong C, Datta S, Lundstrom M. (2011) Full dispersion versus Debye model evaluation of lattice thermal conductivity with a Landauer approach Journal of Applied Physics. 109: 073718
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