Albert F. Yee

Affiliations: 
1985-2003 Materials Science and Engineering University of Michigan, Ann Arbor, Ann Arbor, MI 
 2003- Chemical Engineering & Materials Science University of California, Irvine, Irvine, CA 
Area:
nanotechnology involving polymer materials, and on the physical and mechanical behavior of polymers and their composites and soft materials.
Website:
http://www.faculty.uci.edu/profile.cfm?faculty_id=5442
Google:
"Albert F. Yee"
Bio:

http://afyg.eng.uci.edu/index.html
http://afyg.eng.uci.edu/afyee.html
http://www.mse.engin.umich.edu/people/afyee
http://um2017.org/faculty-history/faculty/albert-f-yee
https://afyeegroup.wordpress.com/alumni/
Yee, A.F., Heat capacity of iron as a function of pressure and temperature, thesis Berkeley (1971)

Cross-listing: Chemistry Tree

Parents

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George Jura grad student 1971 UC Berkeley (Chemistry Tree)
 (Heat capacity of iron as a function of pressure and temperature)

Children

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Hung-Ju Sue grad student 1988 University of Michigan (Chemistry Tree)
Raymond A. Pearson grad student 1990 University of Michigan (E-Tree)
Jianguang Du grad student 2000 University of Michigan (Chemistry Tree)
Yuhai Mei grad student 2000 University of Michigan (Chemistry Tree)
Li-Rong Bao grad student 2001 University of Michigan (Chemistry Tree)
Xiangyang Li grad student 2001 University of Michigan (Chemistry Tree)
Lei Li grad student 2001 University of Michigan (Chemistry Tree)
Jianing Sun grad student 2002 University of Michigan (Chemistry Tree)
Huagen Peng grad student 2004 University of Michigan (Chemistry Tree)
Yen Peng Kong grad student 2010 UC Irvine (Chemistry Tree)
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Publications

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Soles CL, Burns AB, Ito K, et al. (2020) Importance of Sub-Nanosecond Fluctuations on the Toughness of Polycarbonate Glasses Macromolecules. 53: 6672-6681
Dickson MN, Tsao J, Liang EI, et al. (2017) Conformal reversal imprint lithography for polymer nanostructuring over large curved geometries Journal of Vacuum Science & Technology B, Nanotechnology and Microelectronics: Materials, Processing, Measurement, and Phenomena. 35: 021602
Dickson MN, Liang EI, Rodriguez LA, et al. (2015) Nanopatterned polymer surfaces with bactericidal properties. Biointerphases. 10: 021010
Kong YP, Tu CH, Donovan PJ, et al. (2013) Expression of Oct4 in human embryonic stem cells is dependent on nanotopographical configuration. Acta Biomaterialia. 9: 6369-80
Kong YP, Chen L, Yee AF. (2011) Probing near-surface nanoscale mechanical properties of low modulus materials using a quartz crystal resonator atomic force microscope. Nanotechnology. 22: 295709
Peng HG, Kong YP, Yee AF. (2010) Relaxation kinetics of nanostructures on polymer surface: Effect of stress, chain mobility, and spatial confinement Macromolecules. 43: 409-417
Guzmán DL, Roland JT, Keer H, et al. (2008) Using steered molecular dynamics simulations and single-molecule force spectroscopy to guide the rational design of biomimetic modular polymeric materials. Polymer. 49: 3892-3901
He C, Liu T, Tjiu WC, et al. (2008) Microdeformation and fracture mechanisms in polyamide-6/ organoclay nanocomposites Macromolecules. 41: 193-202
Sun N, Liu J, Dull T, et al. (2007) Nanovoid relaxation in a series of copolyester glasses under cyclic loading using synchronous PALS Journal of Polymer Science, Part B: Polymer Physics. 45: 1410-1417
Narisawa I, Yee A. (2006) Crazing and Fracture of Polymers Materials Science and Technology
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