Daniel C. Law, Ph.D.
Affiliations: | 2003 | University of California, Los Angeles, Los Angeles, CA |
Area:
Chemical Engineering, Condensed Matter PhysicsGoogle:
"Daniel Law"Parents
Sign in to add mentorRobert F. Hicks | grad student | 2003 | UCLA | |
(Engineering of compound semiconductor nanostructures by metalorganic vapor -phase epitaxy.) |
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Publications
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Chiu PT, Law DC, Woo RL, et al. (2014) 35.8% space and 38.8% terrestrial 5J direct bonded cells 2014 Ieee 40th Photovoltaic Specialist Conference, Pvsc 2014. 11-13 |
Chiu PT, Law DC, Woo RL, et al. (2014) Direct semiconductor bonded 5J cell for space and terrestrial applications Ieee Journal of Photovoltaics. 4: 493-497 |
Law DC, Boisvert JC, Rehder EM, et al. (2013) Recent progress of spectrolab high-efficiency space solar cells Proceedings of Spie - the International Society For Optical Engineering. 8876 |
Leite MS, Woo RL, Munday JN, et al. (2013) Towards an optimized all lattice-matched InAlAs/InGaAsP/InGaAs multijunction solar cell with efficiency >50% Applied Physics Letters. 102 |
Leite MS, Woo RL, Hong WD, et al. (2011) InAlAs epitaxial growth for wide band gap solar cells Conference Record of the Ieee Photovoltaic Specialists Conference. 000780-000783 |
Woo RL, Hong WD, Mesropian S, et al. (2011) First demonstration of monolithic InP-based InAlAs/InGaAsP/InGaAs triple junction solar cells Conference Record of the Ieee Photovoltaic Specialists Conference. 000295-000298 |
Leite MS, Woo RL, Hong WD, et al. (2011) Wide-band-gap InAlAs solar cell for an alternative multijunction approach Applied Physics Letters. 98 |
Boca A, Boisvert JC, Law DC, et al. (2010) Carbon nanotube-composite wafer bonding for ultra-high efficiency III-V multijunction solar cells Conference Record of the Ieee Photovoltaic Specialists Conference. 3310-3315 |
Cheng SF, Sun Y, Law DC, et al. (2006) Structure of ordered and disordered InxGa1-xP(0 0 1) surfaces prepared by metalorganic vapor phase epitaxy Surface Science. 600: 2924-2927 |
Law DC, Sun Y, Hicks RF. (2003) Reflectance difference spectroscopy of gallium phosphide(001) surfaces Journal of Applied Physics. 94: 6175-6180 |