Teh Y. Tan
Affiliations: | Duke University, Durham, NC |
Area:
Materials Science Engineering, Electronics and Electrical Engineering, EnergyGoogle:
"Teh Tan"Children
Sign in to add traineeQing Gan | grad student | 2000 | Duke |
Subhash M. Joshi | grad student | 2000 | Duke |
Pavel S. Plekhanov | grad student | 2000 | Duke |
Mihai D. Negoita | grad student | 2003 | Duke |
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Publications
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Sopori B, Basnyat P, Devayajanam S, et al. (2017) Dissolution of Oxygen Precipitate Nuclei in n-Type CZ-Si Wafers to Improve Their Material Quality: Experimental Results Ieee Journal of Photovoltaics. 7: 97-103 |
Li N, Li W, Liu L, et al. (2013) A nucleation-growth model of nanowires produced by the vapor-liquid-solid process Journal of Applied Physics. 114: 64302 |
Sopori B, Tan T, Rupnowski P. (2012) Photovoltaic materials and devices International Journal of Photoenergy. 2012 |
Li N, Tan TY, Gösele U. (2008) Transition region width of nanowire hetero- and pn-junctions grown using vapor-liquid-solid processes Applied Physics a: Materials Science and Processing. 90: 591-596 |
Li H, Li N, Joshi SM, et al. (2007) Predominance of Alternate Diffusion Mechanisms for the Interstitial-Substitutional Impurity Gold in Silicon Mrs Proceedings. 994 |
Li N, Tan TY, Gösele U. (2007) Chemical tension and global equilibrium in VLS nanostructure growth process: From nanohillocks to nanowires Applied Physics a: Materials Science and Processing. 86: 433-440 |
Zhao L, Li N, Langner A, et al. (2007) Crystallization of amorphous SiO2 microtubes catalyzed by lithium Advanced Functional Materials. 17: 1952-1957 |
Schubert L, Werner P, Zakharov ND, et al. (2004) Silicon nanowhiskers grown on 〈111〉Si substrates by molecular-beam epitaxy Applied Physics Letters. 84: 4968-4970 |
Negoita MD, Tan TY. (2004) Metallic precipitate contribution to carrier generation in metal–oxide–semiconductor capacitors due to the Schottky effect Journal of Applied Physics. 95: 191-198 |
Tan TY, Li N, Gösele U. (2004) On the thermodynamic size limit of nanowires grown by the vapor-liquid-solid process Applied Physics A. 78: 519-526 |