David Zubia - Publications

Affiliations: 
Engineering University of Texas at El Paso, El Paso, TX, United States 
Area:
Electronics and Electrical Engineering, Energy, Alternative Energy
Website:
https://hb2504.utep.edu/Home/Profile?username=dzubia

54 high-probability publications. We are testing a new system for linking publications to authors. You can help! If you notice any inaccuracies, please sign in and mark papers as correct or incorrect matches. If you identify any major omissions or other inaccuracies in the publication list, please let us know.

Year Citation  Score
2019 Aguirre R, Abdullah S, Zhou X, Zubia D. Molecular Dynamics Calculations of Grain Boundary Mobility in CdTe. Nanomaterials (Basel, Switzerland). 9. PMID 30987313 DOI: 10.3390/Nano9040552  0.301
2019 Vidana A, Almeida S, Martinez M, Acosta E, Mireles J, King T–, Zubia D. Exponential Conductivity Increase in Strained MoS2 via MEMS Actuation Mrs Advances. 4: 2135-2142. DOI: 10.1557/Adv.2019.282  0.302
2018 Aguirre R, Chavez JJ, Li J, Zhou XW, Almeida SF, Wolden C, Zubia D. Crystal Growth and Atom Diffusion in (Cu)ZnTe/CdTe via Molecular Dynamics Ieee Journal of Photovoltaics. 8: 594-599. DOI: 10.1109/Jphotov.2017.2782565  0.344
2018 Chavez JJ, Zhou XW, Almeida SF, Aguirre R, Zubia D. Molecular Dynamics Study of High Symmetry Planar Defect Evolution during Growth of CdTe/CdS Films The Journal of Physical Chemistry C. 122: 751-761. DOI: 10.1021/Acs.Jpcc.7B08527  0.472
2017 Kutes Y, Luria J, Sun Y, Moore A, Aguirre BA, Cruz-Campa JL, Aindow M, Zubia D, Huey BD. Ion-damage-free planarization or shallow angle sectioning of solar cells for mapping grain orientation and nanoscale photovoltaic properties. Nanotechnology. 28: 185705. PMID 28397709 DOI: 10.1088/1361-6528/Aa67C2  0.772
2017 Aguirre R, Chavez JJ, Zhou X, Zubia D. High Fidelity Polycrystalline CdTe/CdS Heterostructures via Molecular Dynamics Mrs Advances. 2: 3225-3230. DOI: 10.1557/Adv.2017.440  0.464
2016 J. Chavez J, W. Zhou X, F. Almeida S, Aguirre R, Zubia D. Molecular Dynamics Simulations of CdTe / CdS Heteroepitaxy - Effect of Substrate Orientation Journal of Materials Science Research. 5: 1. DOI: 10.5539/Jmsr.V5N3P1  0.464
2016 Zhou XW, Chavez JJ, Almeida S, Zubia D. Understanding misfit strain releasing mechanisms via molecular dynamics simulations of CdTe growth on {112}zinc-blende CdS Journal of Applied Physics. 120. DOI: 10.1063/1.4959609  0.462
2016 Zhou XW, Ward DK, Zimmerman JA, Cruz-Campa JL, Zubia D, Martin JE, Van Swol F. An atomistically validated continuum model for strain relaxation and misfit dislocation formation Journal of the Mechanics and Physics of Solids. 91: 265-277. DOI: 10.1016/J.Jmps.2016.03.015  0.667
2016 Almeida S, Chavez JJ, Zhou XW, Zubia D. Effect of substrate orientation on CdS homoepitaxy by molecular dynamics Journal of Crystal Growth. 441: 89-94. DOI: 10.1016/J.Jcrysgro.2016.02.006  0.498
2016 Kutes Y, Aguirre BA, Bosse JL, Cruz-Campa JL, Zubia D, Huey BD. Mapping photovoltaic performance with nanoscale resolution Progress in Photovoltaics: Research and Applications. 24: 315-325. DOI: 10.1002/Pip.2698  0.773
2015 Almeida S, Ochoa E, Chavez JJ, Zhou XW, Zubia D. Calculation of surface diffusivity and residence time by molecular dynamics with application to nanoscale selective-area growth Journal of Crystal Growth. 423: 55-60. DOI: 10.1016/J.Jcrysgro.2015.04.036  0.337
2015 Zhou XW, Ward DK, Doty FP, Zimmerman JA, Wong BM, Cruz-Campa JL, Nielson GN, Chavez JJ, Zubia D, Mcclure JC. A prediction of dislocation-free CdTe/CdS photovoltaic multilayers via nano-patterning and composition grading Progress in Photovoltaics: Research and Applications. DOI: 10.1002/Pip.2628  0.731
2014 Zhou X, Chavez JJ, Cruz-Campa JL, Zubia D. Towards model-guided defect reduction in Cd1-xZnxTe/CdS solar cells: Development of molecular dynamics models 2014 Ieee 40th Photovoltaic Specialist Conference, Pvsc 2014. 2439-2442. DOI: 10.1109/PVSC.2014.6925422  0.69
2014 Kutes Y, Bosse JL, Aguirre BA, Cruz-Campa JL, Michael J, Zubia D, Spoerke ED, Huey BD. Nanoscale photovoltaic performance in micro/nanopatterned CdTe-CdS thin film solar cells 2014 Ieee 40th Photovoltaic Specialist Conference, Pvsc 2014. 1903-1907. DOI: 10.1109/PVSC.2014.6925297  0.786
2014 Chavez JJ, Zhou X, Ward DK, Cruz-Campa JL, Zubia D. A molecular dynamics study on defect reduction in thin film Cd1-xZnxTe/CdS solar cells 2014 Ieee 40th Photovoltaic Specialist Conference, Pvsc 2014. 1593-1595. DOI: 10.1109/PVSC.2014.6925224  0.724
2014 Aguirre B, Cruz-Campa JL, Pete D, Ordonez R, Michael J, Zubia D. Method for electrical-structural correlation in isolated CdTe/CdS islands 2014 Ieee 40th Photovoltaic Specialist Conference, Pvsc 2014. 1585-1588. DOI: 10.1109/PVSC.2014.6925221  0.796
2014 Aguirre BA, Zubia D, Ordonez R, Anwar F, Prieto H, Sanchez CA, Salazar MT, Pimentel AA, Michael JR, Zhou X, McClure JC, Nielson GN, Cruz-Campa JL. Selective growth of CdTe on Nano-patterned CdS via close-space sublimation Journal of Electronic Materials. 43: 2651-2657. DOI: 10.1007/S11664-014-3104-7  0.779
2013 Zhou XW, Ward DK, Martin JE, van Swol FB, Cruz-Campa JL, Zubia D. Publisher's Note: Stillinger-Weber potential for the II-VI elements Zn-Cd-Hg-S-Se-Te [Phys. Rev. B88, 085309 (2013)] Physical Review B. 88. DOI: 10.1103/Physrevb.88.199902  0.651
2013 Zhou XW, Ward DK, Martin JE, Van Swol FB, Cruz-Campa JL, Zubia D. Stillinger-Weber potential for the II-VI elements Zn-Cd-Hg-S-Se-Te Physical Review B - Condensed Matter and Materials Physics. 88. DOI: 10.1103/Physrevb.88.085309  0.64
2013 Cruz-Campa JL, Nielson GN, Resnick PJ, Okandan M, Young R, Zubia D, Gupta V. Ultrathin and micro-sized solar cell performance optimization via simulations Progress in Photovoltaics: Research and Applications. 21: 1114-1126. DOI: 10.1002/Pip.2214  0.682
2012 Cruz-Campa JL, Zubia D, Zhou X, Aguirre BA, Ward D, Sanchez CA, Chavez JJ, Anwar F, Marrufo D, Ordonez R, Lu P, Rye MJ, Michael J, McClure JC, Nielson GN. Nanopatterning and bandgap grading to reduce defects in CdTe solar cells Conference Record of the Ieee Photovoltaic Specialists Conference. 838-842. DOI: 10.1109/PVSC.2012.6317734  0.809
2012 Chavez JJ, Ward DK, Wong BM, Doty FP, Cruz-Campa JL, Nielson GN, Gupta VP, Zubia D, McClure J, Zhou XW. Defect formation dynamics during CdTe overlayer growth Physical Review B - Condensed Matter and Materials Physics. 85. DOI: 10.1103/Physrevb.85.245316  0.697
2012 Zhou XW, Ward DK, Wong BM, Doty FP, Zimmerman JA, Nielson GN, Cruz-Campa JL, Gupta VP, Granata JE, Chavez JJ, Zubia D. High-fidelity simulations of CdTe vapor deposition from a bond-order potential-based molecular dynamics method Physical Review B - Condensed Matter and Materials Physics. 85. DOI: 10.1103/Physrevb.85.245302  0.733
2011 Almeida S, Aguirre B, Marquez N, McClure J, Zubia D. Resistive switching of SnO2 thin films on glass substrates Integrated Ferroelectrics. 126: 117-124. DOI: 10.1080/10584587.2011.575015  0.764
2011 Cruz-Campa JL, Okandan M, Resnick PJ, Clews P, Pluym T, Grubbs RK, Gupta VP, Zubia D, Nielson GN. Microsystems enabled photovoltaics: 14.9% efficient 14 μm thick crystalline silicon solar cell Solar Energy Materials and Solar Cells. 95: 551-558. DOI: 10.1016/J.Solmat.2010.09.015  0.684
2011 Aguirre B, Vemuri RS, Zubia D, Engelhard MH, Shutthananadan V, Bharathi KK, Ramana CV. Growth, microstructure and electrical properties of sputter-deposited hafnium oxide (HfO2) thin films grown using a HfO2 ceramic target Applied Surface Science. 257: 2197-2202. DOI: 10.1016/J.Apsusc.2010.09.072  0.79
2010 Cruz-Campa JL, Zubia D, Okandan M, Resnick PJ, Grubbs RK, Clews P, Pluym T, Young RW, Gupta VP, Nielson GN. Thin and small form factor cells: Simulated behavior Conference Record of the Ieee Photovoltaic Specialists Conference. 1348-1351. DOI: 10.1109/PVSC.2010.5614366  0.604
2010 Vemuri RS, Gullapalli SK, Zubia D, McClure JC, Ramana CV. Structural and chemical properties of highly oriented cadmium sulfide (CdS) cauliflower films Chemical Physics Letters. 495: 232-235. DOI: 10.1016/J.Cplett.2010.06.042  0.449
2010 Escobedo A, Quinones S, Adame M, McClure J, Zubia D, Brill G. Characterization of smooth CdTe(111) films by the conventional close-spaced sublimation technique Journal of Electronic Materials. 39: 400-409. DOI: 10.1007/S11664-010-1082-Y  0.448
2009 Zubia D, Romo L, Cruz-Campa J, Aguirre B, McClure J. Photovoltaics of ordered CdTe/CdS nanoarrays Conference Record of the Ieee Photovoltaic Specialists Conference. 001842-001845. DOI: 10.1109/PVSC.2009.5411523  0.771
2009 Cruz-Campa JL, Zubia D. CdTe thin film growth model under CSS conditions Solar Energy Materials and Solar Cells. 93: 15-18. DOI: 10.1016/J.Solmat.2008.02.012  0.667
2007 Zubía D, López C, Rodríguez M, Escobedo A, Oyer S, Romo L, Rogers S, Quiñónez S, McClure J. Ordered CdTe/CdS Arrays for High-Performance Solar Cells Journal of Electronic Materials. 36: 1599-1603. DOI: 10.1007/S11664-007-0276-4  0.457
2007 Quiñones SA, Ammu SM, Escobedo A, Rodriguez M, Cruz-Campa J, McClure J, Zubia D. SEM characterization of CdTe growth on CdTe(111) by close-spaced sublimation Journal of Materials Science: Materials in Electronics. 18: 1085-1091. DOI: 10.1007/S10854-007-9211-Y  0.724
2005 Terrazas J, Rodríguez A, Lopez C, Escobedo A, Kuhlmann FJ, McClure J, Zubía D. Ordered polycrystalline thin films for high performance CdTe/CdS solar cells Thin Solid Films. 490: 146-153. DOI: 10.1016/J.Tsf.2005.04.047  0.489
2003 Wakeland P, Khraishi T, Zubia D. An anisotropic elasticity model of strain partitioning in epitaxial thin layers Journal of Electronic Materials. 32: 836-841. DOI: 10.1007/S11664-003-0197-9  0.317
2002 Trager-Cowan C, Sweeney F, Hastie J, Manson-Smith SK, Cowan DA, McColl D, Mohammed A, O'Donnell KP, Zubia D, Hersee SD, Foxon CT, Harrison I, Novikov SV. Characterization of nitride thin films by electron backscatter diffraction. Journal of Microscopy. 205: 226-30. PMID 11996185 DOI: 10.1046/J.1365-2818.2002.00996.X  0.669
2002 Brueck SRJ, Hersee SD, Zubia D. Introduction to the feature section on growth of heterostructure materials on nanoscale substrates Ieee Journal of Quantum Electronics. 38: 973-974. DOI: 10.1109/Jqe.2002.801646  0.591
2002 Hersee SD, Zubia D, Sun X, Bommena R, Fairchild M, Zhang S, Burckel D, Frauenglass A, Brueck SRJ. Nanoheteroepitaxy for the integration of highly mismatched semiconductor materials Ieee Journal of Quantum Electronics. 38: 1017-1028. DOI: 10.1109/Jqe.2002.800987  0.636
2002 Zubia D, Hersee SD, Khraishi T. Strain partitioning in coherent compliant heterostructures Applied Physics Letters. 80: 740-742. DOI: 10.1063/1.1445803  0.593
2002 Trager-Cowan C, Sweeney F, Wilkinson AJ, Watson IM, Middleton PG, O'Donnell KP, Zubia D, Hersee SD, Einfeldt S, Hommel D. Determination of the structural and luminescence properties of nitrides using electron backscattered diffraction and photo- and cathodoluminescence Physica Status Solidi C: Conferences. 532-536. DOI: 10.1002/Pssc.200390107  0.668
2001 Trager-Cowan C, Manson-Smith SK, Cowan DA, Sweeney F, McColl D, Mohammed A, Timm R, Middleton PG, O'Donnell KP, Zubia D, Hersee SD. Characterisation of nitride thin films by electron backscattered diffraction Materials Science and Engineering B: Solid-State Materials For Advanced Technology. 82: 19-21. DOI: 10.1016/S0921-5107(00)00791-1  0.662
2001 Zubia D, Zhang S, Bommena R, Sun X, Brueck SRJ, Hersee SD. Initial nanoheteroepitaxial growth of GaAs on Si(100) by OMVPE Journal of Electronic Materials. 30: 812-816. DOI: 10.1007/S11664-001-0062-7  0.624
2001 Sweeney F, Trager-Cowan C, Hastie J, Cowan DA, O'Donnell KP, Zubia D, Hersee SD, Foxon CT, Harrison I, Novikov SV. Electron backscattered diffraction patterns from cooled gallium nitride thin films Physica Status Solidi (B) Basic Research. 228: 533-536. DOI: 10.1002/1521-3951(200111)228:2<533::Aid-Pssb533>3.0.Co;2-Q  0.639
2000 Trager-Cowan C, McColl D, Sweeney F, Grimson STF, Treguer JF, Mohammed A, Middleton PG, Manson-Smith SK, O'Donnell KP, Van Der Stricht W, Moerman L, Demeester P, Wu MF, Vantomme A, Zubia D, et al. Probing nitride thin films in 3-dimensions using a variable energy electron beam Mrs Internet Journal of Nitride Semiconductor Research. 5. DOI: 10.1557/Proc-595-F99W5.10  0.655
2000 Zubia D, Zaidi SH, Hersee SD, Brueck SRJ. Nanoheteroepitaxy: Nanofabrication route to improved epitaxial growth Journal of Vacuum Science and Technology B: Microelectronics and Nanometer Structures. 18: 3514-3520. DOI: 10.1116/1.1321283  0.626
2000 Zubia D, Zaidi SH, Brueck SRJ, Hersee SD. Nanoheteroepitaxial growth of GaN on Si by organometallic vapor phase epitaxy Applied Physics Letters. 76: 858-860. DOI: 10.1063/1.125608  0.646
2000 Wang RH, Zubia D, O’Neil T, Emin D, Aselage T, Zhang W, Hersee SD. Chemical vapor deposition of B12As2 thin films on 6H-SiC Journal of Electronic Materials. 29: 1304-1306. DOI: 10.1007/S11664-000-0129-X  0.655
2000 Wang RH, Zubia D, O'Neil T, Emin D, Aselage T, Zhang W, Hersee SD. Chemical vapor deposition of B12As2 thin films on 6H-SiC Journal of Electronic Materials. 29: 1304-1306.  0.621
1999 Zubia D, Hersee SD. Nanoheteroepitaxy: The application of nanostructuring and substrate compliance to the heteroepitaxy of mismatched semiconductor materials Journal of Applied Physics. 85: 6492-6496. DOI: 10.1063/1.370153  0.599
1999 Trager-Cowan C, McArthur S, Middleton PG, O'Donnell KP, Zubia D, Hersee SD. GaN epilayers on misoriented substrates Materials Science and Engineering B: Solid-State Materials For Advanced Technology. 59: 235-238. DOI: 10.1016/S0921-5107(98)00373-0  0.594
1998 Trager-Cowan C, McArthur S, Middleton PG, O'Donnell KP, Zubia D, Hersee SD. Properties of GaN epilayers grown on misoriented sapphire substrates Mrs Internet Journal of Nitride Semiconductor Research. 3. DOI: 10.1557/S1092578300001083  0.593
1997 Ramer JC, Zubia D, Liu G, Hersee SD. Stability and interface abruptness of In x Ga 1−x N/In y Ga 1−y N multiple quantum well structures grown by OMVPE Journal of Electronic Materials. 26: 1109-1113. DOI: 10.1007/S11664-997-0003-1  0.304
1997 Ramer JC, Zubia D, Liu G, Hersee SD. Stability and interface abruptness of InxGa1-xN/InyGa1-yN multiple quantum well structures grown by OMVPE Journal of Electronic Materials. 26: 1109-1113.  0.502
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