David Kisailus

Affiliations: 
Chemical and Environmental Engineering University of California, Riverside, Riverside, CA, United States 
Area:
Materials Science Engineering, Applied Mechanics, Biomechanics Biophysics
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"David Kisailus"

Parents

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Frederick F. Lange grad student 2002 UC Santa Barbara (Chemistry Tree)
 (Novel processing methods for gallium nitride nanocrystalline powders and thin films.)
Daniel E. Morse post-doc UC Santa Barbara (Chemistry Tree)
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Publications

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Huang W, Yaraghi NA, Yang W, et al. (2019) A natural energy absorbent polymer composite: The equine hoof wall. Acta Biomaterialia
Hou W, Cortez P, Wuhrer R, et al. (2017) Oriented Epitaxial TiO2 Nanowires for Water Splitting. Nanotechnology
Ren H, Sun J, Yu R, et al. (2016) Controllable synthesis of mesostructures from TiO2 hollow to porous nanospheres with superior rate performance for lithium ion batteries. Chemical Science. 7: 793-798
Yaraghi NA, Guarín-Zapata N, Grunenfelder LK, et al. (2016) A Sinusoidally Architected Helicoidal Biocomposite. Advanced Materials (Deerfield Beach, Fla.)
Sullivan TN, Pissarenko A, Herrera SA, et al. (2016) A lightweight, biological structure with tailored stiffness: the feather vane. Acta Biomaterialia
Jung JY, Naleway SE, Yaraghi NA, et al. (2016) Structural analysis of the tongue and hyoid apparatus in a woodpecker. Acta Biomaterialia
Maeda Y, Tateishi T, Niwa Y, et al. (2016) Peptide-mediated microalgae harvesting method for efficient biofuel production. Biotechnology For Biofuels. 9: 10
Guarín-Zapata N, Gomez J, Yaraghi N, et al. (2015) Shear wave filtering in naturally-occurring Bouligand structures. Acta Biomaterialia. 23: 11-20
de Obaldia EE, Jeong C, Grunenfelder LK, et al. (2015) Analysis of the mechanical response of biomimetic materials with highly oriented microstructures through 3D printing, mechanical testing and modeling. Journal of the Mechanical Behavior of Biomedical Materials. 48: 70-85
Ren H, Sun J, Yu R, et al. (2015) Controllable synthesis of mesostructures from TiO2 hollow to porous nanospheres with superior rate performance for lithium ion batteries Chemical Science. 7: 793-798
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