Paul C. McIntyre

Affiliations: 
Stanford University, Palo Alto, CA 
Area:
Materials Science Engineering, Condensed Matter Physics
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Children

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Maxim B. Kelman grad student 2003 Stanford
Daniel B. Aubertine grad student 2004 Stanford
Ruey-Ven Wang grad student 2004 Stanford
Nevran Ozguven grad student 2007 Stanford
Raghavasimhan Sreenivasan grad student 2007 Stanford
Jeong-Hee Ha grad student 2008 Stanford
Ricardo J. Zednik grad student 2008 Stanford
Irene A. Goldthorpe grad student 2009 Stanford
Shu Hu grad student 2009-2012 Stanford (Chemistry Tree)
Yanming Wang grad student 2011-2016
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Publications

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Huang F, Saini B, Yu Z, et al. (2023) Enhanced Switching Reliability of HfZrO Ferroelectric Films Induced by Interface Engineering. Acs Applied Materials & Interfaces
Yu Z, Saini B, Liu Y, et al. (2022) Nanocrystallite Seeding of Metastable Ferroelectric Phase Formation in Atomic Layer-Deposited Hafnia-Zirconia Alloys. Acs Applied Materials & Interfaces
Meng AC, Wang Y, Braun MR, et al. (2021) Bending and precipitate formation mechanisms in epitaxial Ge-core/GeSn-shell nanowires. Nanoscale
Babadi AS, Tang-Kong R, McIntyre PC. (2021) Link between Gas Phase Reaction Chemistry and the Electronic Conductivity of Atomic Layer Deposited Titanium Oxide Thin Films. The Journal of Physical Chemistry Letters. 12: 3625-3632
Braun MR, Guniat L, Fontcuberta I Morral A, et al. (2020) In-Situ Reflectometry to Monitor Locally-Catalyzed Initiation and Growth of Nanowire Assemblies. Nanotechnology
Fukumizu H, Sekine M, Hori M, et al. (2020) Initial growth analysis of ALD Al2O3 film on hydrogen-terminated Si substrate via in situ XPS Japanese Journal of Applied Physics. 59: 016504
McIntyre PC, Morral AFi. (2020) Semiconductor nanowires: to grow or not to grow? Materials Today Nano. 9: 100058
Meng AC, Braun MR, Wang Y, et al. (2020) Growth mode control for direct-gap core/shell Ge/GeSn nanowire light emission Materials Today. 40: 101-113
Tan W, Bowring AR, Babadi AS, et al. (2020) Interfacing Low‐Temperature Atomic Layer Deposited TiO 2 Electron Transport Layers with Metal Electrodes Advanced Materials Interfaces. 7: 1902054
Kavrik MS, Bostwick A, Rotenberg E, et al. (2019) Understanding the Mechanism of Electronic Defects Suppression Enabled by Non-Idealities in Atomic Layer Deposition. Journal of the American Chemical Society
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