personnel profile
Paul C. McIntyre
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Research Statement
McIntyre's research group investigates the kinetics and mechanisms of diffusion, chemical reactions, and phase transitions that occur during materials processing and service. Most of this work focuses on thin films, with particular emphasis on complex metal oxides for advanced electronic applications. His students synthesize materials, characterize their structures and electrical properties, and develop predictive models for important time-dependent phenomena. Their current research interests include atomic layer deposition of ultrathin films onto complex surfaces (e.g. semiconductor nanowires), area-selective deposition of nanometer-scale device structures, and interface atomic and electronic structure studies.
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Discipline |
Year |
School |
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1993 |
MIT |
| Publication Title | Author(s)/Speaker(s) | Open Document |
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Achieving area-selective atomic layer deposition on patterned substrates by selective surface modification
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McIntyre, PC, et. al. |
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Misfit dislocation dissociation and Lomer formation in low mismatch SiGe/Si heterostructures
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McIntyre, PC, et. al. |
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Z-contrast and electron energy loss spectroscopy study of passive layer formation at ferroelectric PbTiO3/Pt interfaces
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McIntyre, PC, et. al. |
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Photoemission studies of passivation of germanium nanowires
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McIntyre, PC, et. al. |
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Title:
Achieving area-selective atomic layer deposition on patterned substrates by selective surface modification
Author(s):
McIntyre, PC, et. al.
Journal:
Applied Physics Letters
Date Published:
2005-5-9
Title:
Misfit dislocation dissociation and Lomer formation in low mismatch SiGe/Si heterostructures
Author(s):
McIntyre, PC, et. al.
Journal:
Journal of Materials Research
Date Published:
2005-2
Title:
Z-contrast and electron energy loss spectroscopy study of passive layer formation at ferroelectric PbTiO3/Pt interfaces
Author(s):
McIntyre, PC, et. al.
Journal:
APPLIED PHYSICS LETTERS
Date Published:
2005-12-26
Title:
Photoemission studies of passivation of germanium nanowires
Author(s):
McIntyre, PC, et. al.
Journal:
APPLIED PHYSICS LETTERS
Date Published:
2005-12-26
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