Charles William Miller
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Also affiliated: Oak Ridge National Laboratory (1977–1990); Centers for Disease Control and Prevention (1996–2022); United States Department of Health and Human Services (2012); Environmental Protection Agency (1971–1979); Cleveland Clinic (2014–2025); United States Department of Energy (1984); United States Department of Commerce (1980–1984); Office of Scientific and Technical Information (2008); Inserm (1977); Brookhaven National Laboratory (1984); University of Washington (1971); University of Zurich (1973); Washington University in St. Louis (1987); Radiation Effects Research Foundation (2002); Purdue University West Lafayette (1974–1975); University of Utah (2002); University of North Dakota (2001–2014); Hospital of the University of Pennsylvania (1983–1984); Martha Jefferson Hospital (1983); California Pacific Medical Center (1970); Anderson University - Indiana (1971–1977); Associated Colleges of the Midwest (1984); ETH Zurich (1973); University of Illinois Chicago (1997); Starmet Corporation (United States) (2008); Institute for Biomedical Engineering (1973); National Center for Environmental Health (1999–2013); IBM Research - Thomas J. Watson Research Center (1989); Hôpital Lariboisière (1977); University of Virginia Hospital (1972); Wanhua Chemical (China) (2008); University of Virginia Medical Center (1976–1979); National Cancer Institute (2002); National Institute of Mental Health (1982); Union Carbide (United States) (1977); Division of Cancer Epidemiology and Genetics (2002); Ontario Veterinary College (1990–1997); United States Navy (1953); University of Virginia (1979–2001); The Ohio State University (1971–1986); Stony Brook University (1987–2015); University of Tennessee at Knoxville (1987); University of Pennsylvania (1983–1984); University of Guelph (1990–1997); Old Dominion University (1980); Colorado State University (1973–2001)
Research Areas
Biomedical Subjects
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Biography and Research Information
OverviewAI-generated summary
Charles William Miller is a researcher with a significant publication record, indicated by an h-index of 30 and over 3,400 citations across 282 publications. His research has been supported by federal grants, including an NSF award of $36,600 for the 51st Arkansas Spring Lecture Series in the Mathematical Sciences. Miller has collaborated with researchers at the University of Arkansas at Fayetteville, including Nathaniel Harris and Min Zou, as well as Sujan Ghosh at the University of Arkansas at Little Rock.
Miller's scholarly work spans multiple areas, with publications addressing topics such as survival following hip fracture, organ harvesting techniques, and the prediction of transfusion requirements in liver transplantation. His research has also explored the role of specific calcium antagonist binding sites in the brain and examined the surfaces of glassy carbon materials using advanced microscopic and spectroscopic methods. His recent activity and a publication date of 2026 suggest ongoing engagement in research.
Metrics
- h-index: 29
- Publications: 270
- Citations: 3,203
Selected Publications
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Co-tuning ultrathin ZnO films and programmable 3D textures to control lunar dust simulant adhesion (2026)
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A Versatile Platform for Designing and Fabricating Multi-Material Perfusable 3D Microvasculatures (2025)
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Repetitive nanoindenter scratch testing of polydopamine/polytetrafluoroethylene-based thin coatings (2022)
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Laser surface texturing of both thin polytetrafluoroethylene coatings and stainless steel substrates for improving tribological properties (2022)
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Effects of Test Parameters on the Frictional Properties of Al/Diamond-Like Carbon Core-Shell Nanostructure-Textured Surfaces (2022)
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Test parameter and material dependence of the frictional properties of core-shell nanostructure textured surfaces (2022)
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Microscale friction and deformation behavior of polydopamine/polytetrafluoroethylene-coated 60NiTi from nanoscratch tests (2022)
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Effect of Cu nanoparticles on the tribological performance of polydopamine + polytetrafluoroethylene coatings in oil-lubricated condition (2021)
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The effect of coating thickness on the tribological properties of polydopamine/PTFE + graphite particle coatings on 60NiTi (2021)
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Tribological behavior of the PDA/PTFE + Cu-SiO2 nanoparticle thin coatings (2021)
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Nanomechanical properties of hardened 60NiTi (2020)
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Tribological performance of PDA/PTFE + Graphite particle coatings on 60NiTi (2020)
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The Effects of PTFE Thickness on the Tribological Behavior of Thick PDA/PTFE Coatings (2020)
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The Effects of Surface Roughness on the Durability of Polydopamine/PTFE Solid Lubricant Coatings on NiTiNOL 60 (2019)
Federal Grants 1 $36,600 total
Conference: 51st Arkansas Spring Lecture Series in the Mathematical Sciences
Collaboration Network
Top Collaborators
- Nanomechanical properties of hardened 60NiTi
- The Effects of Surface Roughness on the Durability of Polydopamine/PTFE Solid Lubricant Coatings on NiTiNOL 60
- Laser surface texturing of both thin polytetrafluoroethylene coatings and stainless steel substrates for improving tribological properties
- The Effects of PTFE Thickness on the Tribological Behavior of Thick PDA/PTFE Coatings
- Tribological performance of PDA/PTFE + Graphite particle coatings on 60NiTi
Showing 5 of 13 shared publications
- Laser surface texturing of both thin polytetrafluoroethylene coatings and stainless steel substrates for improving tribological properties
- Tribological behavior of the PDA/PTFE + Cu-SiO2 nanoparticle thin coatings
- The effect of coating thickness on the tribological properties of polydopamine/PTFE + graphite particle coatings on 60NiTi
- A Versatile Platform for Designing and Fabricating Multi-Material Perfusable 3D Microvasculatures
- Co-tuning ultrathin ZnO films and programmable 3D textures to control lunar dust simulant adhesion
- The Effects of Surface Roughness on the Durability of Polydopamine/PTFE Solid Lubricant Coatings on NiTiNOL 60
- The Effects of PTFE Thickness on the Tribological Behavior of Thick PDA/PTFE Coatings
- Tribological performance of PDA/PTFE + Graphite particle coatings on 60NiTi
- The effect of coating thickness on the tribological properties of polydopamine/PTFE + graphite particle coatings on 60NiTi
- The Effects of PTFE Thickness on the Tribological Behavior of Thick PDA/PTFE Coatings
- Effect of Cu nanoparticles on the tribological performance of polydopamine + polytetrafluoroethylene coatings in oil-lubricated condition
- Tribological behavior of the PDA/PTFE + Cu-SiO2 nanoparticle thin coatings
- The Effects of PTFE Thickness on the Tribological Behavior of Thick PDA/PTFE Coatings
- Test parameter and material dependence of the frictional properties of core-shell nanostructure textured surfaces
- Effects of Test Parameters on the Frictional Properties of Al/Diamond-Like Carbon Core-Shell Nanostructure-Textured Surfaces
- Laser surface texturing of both thin polytetrafluoroethylene coatings and stainless steel substrates for improving tribological properties
- Tribological behavior of the PDA/PTFE + Cu-SiO2 nanoparticle thin coatings
- Test parameter and material dependence of the frictional properties of core-shell nanostructure textured surfaces
- Effects of Test Parameters on the Frictional Properties of Al/Diamond-Like Carbon Core-Shell Nanostructure-Textured Surfaces
- Test parameter and material dependence of the frictional properties of core-shell nanostructure textured surfaces
- Effects of Test Parameters on the Frictional Properties of Al/Diamond-Like Carbon Core-Shell Nanostructure-Textured Surfaces
- Test parameter and material dependence of the frictional properties of core-shell nanostructure textured surfaces
- Effects of Test Parameters on the Frictional Properties of Al/Diamond-Like Carbon Core-Shell Nanostructure-Textured Surfaces
- Nanomechanical properties of hardened 60NiTi
- Tribological behavior of the PDA/PTFE + Cu-SiO2 nanoparticle thin coatings
- Tribological behavior of the PDA/PTFE + Cu-SiO2 nanoparticle thin coatings
- Tribological behavior of the PDA/PTFE + Cu-SiO2 nanoparticle thin coatings
- Effect of Cu nanoparticles on the tribological performance of polydopamine + polytetrafluoroethylene coatings in oil-lubricated condition
- Effect of Cu nanoparticles on the tribological performance of polydopamine + polytetrafluoroethylene coatings in oil-lubricated condition
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