Minjoo Larry Lee
Affiliations: | 2008-2016 | Electrical Engineering | Yale University, New Haven, CT |
2016- | Electrical and Computer Engineering | University of Illinois, Urbana-Champaign, Urbana-Champaign, IL |
Area:
molecular beam epitaxy, photovoltaics, lasers, quantum dots, dislocationsWebsite:
https://ece.illinois.edu/directory/faculty/mlleeGoogle:
"Minjoo Lawrence Lee" OR "Minjoo Larry Lee"Bio:
https://publish.illinois.edu/leegroupece/people/minjoo-larry-lee/
https://www.researchgate.net/profile/Minjoo_Lee2
https://scholar.google.com/citations?user=_YO8CB4AAAAJ&hl=en
Lee, Minjoo Lawrence, MOSFET channel engineering using strained Si and strained Ge grown on SiGe virtual substrates Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, 2003.
Cross-listing: E-Tree
Parents
Sign in to add mentorEugene A. Fitzgerald | grad student | 1999-2003 | MIT | |
(MOSFET channel engineering using strained Si and strained Ge grown on SiGe virtual substrates) | ||||
Dimitri A Antoniadis | post-doc | 2003-2006 | MIT |
Children
Sign in to add traineeYuncheng Song | grad student | 2014 | Yale (E-Tree) |
Stephanie Tomasulo | grad student | 2014 | Yale (E-Tree) |
Christopher Yerino | grad student | 2011-2015 | Yale |
Kevin Nay Yaung | grad student | 2010-2016 | Yale |
Joseph Faucher | grad student | 2011-2016 | Yale |
Daehwan Jung | grad student | 2011-2016 | Yale |
Michelle Vaisman | grad student | 2013-2018 | Yale |
Yukun Sun | grad student | 2014-2020 | Yale |
Paul Simmonds | post-doc | 2009-2011 | Yale (Computer Science Tree) |
John Simon | post-doc | 2009-2011 | Yale |
Jordan R. Lang | post-doc | 2012-2014 | Yale (Physics Tree) |
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Publications
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Sun Y, Fan S, Faucher J, et al. (2021) 2.0–2.2 eV AlGaInP solar cells grown by molecular beam epitaxy Solar Energy Materials and Solar Cells. 219: 110774 |
Hool RD, Chai Y, Sun Y, et al. (2020) Relaxed GaP on Si with low threading dislocation density Applied Physics Letters. 116: 42102 |
Chen C, Chen F, Chen X, et al. (2019) Bright Mid-Infrared Photoluminescence from Thin-Film Black Phosphorus. Nano Letters |
Fan S, Jung D, Sun Y, et al. (2019) 16.8%-Efficient n + /p GaAs Solar Cells on Si With High Short-Circuit Current Density Ieee Journal of Photovoltaics. 9: 660-665 |
Walker ES, Muschinske S, Brennan CJ, et al. (2019) Composition-dependent structural transition in epitaxial Bi1−xSbx thin films on Si(111) Physical Review Materials. 3 |
Jung D, Yu L, Dev S, et al. (2019) Design and growth of multi-functional InAsP metamorphic buffers for mid-infrared quantum well lasers on InP Journal of Applied Physics. 125: 082537 |
Ironside DJ, Skipper AM, Leonard TA, et al. (2019) High-Quality GaAs Planar Coalescence over Embedded Dielectric Microstructures Using an All-MBE Approach Crystal Growth & Design. 19: 3085-3091 |
Fan S, Yu ZJ, Sun Y, et al. (2019) 20%-efficient epitaxial GaAsP/Si tandem solar cells Solar Energy Materials and Solar Cells. 202: 110144 |
Mukherjee K, Vaisman M, Callahan PG, et al. (2019) Anomalous tilting in InGaAs graded buffers from dislocation sources at wafer edges Journal of Crystal Growth. 512: 169-175 |
Grandidier J, Atwater HA, Cutts JA, et al. (2018) Low-Intensity High-Temperature (LIHT) Solar Cells for Venus Atmosphere Ieee Journal of Photovoltaics. 8: 1621-1626 |