For his pioneering research in atom probe field-ion microscopy and atom probe tomography, most recently to understand the unprecedented properties and behaviors of nanostructured ferritic steels.
Filter Corporate Fellows
Corporate Fellow Type
Year
- (-) 2010 (1)
- (-) 2005 (2)
- (-) 2002 (1)
- (-) 2001 (1)
- (-) 1998 (1)
- (-) 1992 (1)
- (-) 1986 (1)
- (-) 1985 (2)
- (-) 1983 (1)
- 2022 (1)
- 2020 (1)
- 2016 (2)
- 2015 (2)
- 2014 (1)
- 2009 (1)
- 2008 (1)
- 2007 (1)
- 2006 (1)
- 2004 (1)
- 2003 (1)
- 1999 (1)
- 1997 (2)
- 1996 (2)
- 1994 (2)
- 1990 (1)
- 1989 (1)
- 1988 (1)
- 1987 (1)
- 1979 (4)
- 1976 (2)
All Corporate Fellow summaries reflect the awardee and ORNL at the time the fellowship was awarded.
2010
2005
For studies of the electronic structure of molecules, computational chemistry, and high-performance algorithms and computing.
For developments in biomedical engineering and biotechnology, micromechanical devices, and nanoscale imaging and detection.
2002
For forefront studies of the fundamental science of actinide elements, through mendelevium, which employ novel experimental techniques, make systematic comparisons, and emphasize the role of the elements' electronic configurations.
2001
For significant contributions and leadership in the processing and properties of materials, particularly intermetallic alloys, which have led to his reputation as one of the world's leading scientists in these areas.
1998
For expertise in developing neutron detection technologies used in scientific research and in nuclear weapon and arms control verification.
1992
For research leading to the development of new materials and to the solution of a wide range of fundamental and applied problems in solid-state science through the application of modern methods for the synthesis and characterization of ceramics, glasses, and alloys and the growth of single crystals.
1986
For contributions to understanding plasma turbulence and the nonlinear properties of magnetohydrodynamic instabilities, especially their role in explaining the behavior of magnetically confined plasmas, and for development of new magnetic confinement concepts that overcome these limitations.
1985
For ideas and techniques which have opened new frontiers in chemical research and now play major roles in the study, understanding, and use of photoionization and photoelectron spectroscopy in studies of "hot atom" chemistry and work with multiply charged molecular ions.
Mazur, who led the Theoretical and Applied Cryobiology Group in the Biology Division, concentrated his research on fundamental mechanisms responsible for injury to cells during freezing and warming. This research and other basic findings were described in his review paper "Freezing of Living Cells: Mechanisms and Implications."