学位论文详细信息
Microgel-based coatings and their use as self-healing, dynamic substrates for bioapplications
Layer-by-layer;Microgels;Viscoelastic;Self-healing;Thin films
Spears, Mark William ; Lyon, Andrew Chemistry and Biochemistry Fernández, Facundo M. Dickson, Robert M. Oyelere, Adegboyega K. Fernandez-Nieves, Alberto ; Lyon, Andrew
University:Georgia Institute of Technology
Department:Chemistry and Biochemistry
关键词: Layer-by-layer;    Microgels;    Viscoelastic;    Self-healing;    Thin films;   
Others  :  https://smartech.gatech.edu/bitstream/1853/53060/1/SPEARS-DISSERTATION-2014.pdf
美国|英语
来源: SMARTech Repository
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【 摘 要 】

Microgels are solvent swollen, cross-linked polymer macromolecules of micro or nanoscale dimensions. In this work, microgels are used as versatile building blocks in layer-by-layer assemblies to form thin coatings. While conceptually simple materials, these microgel-based films actually possess extremely complex behavior as evidenced by two particular areas. First, microgel films have self-healing properties, allowing them to rapidly recover from damage in the presence of solvent. The healing step requires rearrangement of film components, demonstrating the dynamic and mobile nature of the films. Second, fibroblasts display complex behavior on microgel films arising from the properties of the coating. A chemical crosslinking treatment of the film affects the film network structure in a concentration-dependent manner. These network changes result in altered mechanical properties that are the primary controlling factor in determining cell behavior at the interface. These data suggest that fibroblasts are not solely controlled by the film elasticity, but rather by the viscoelasticity, and there is a viscoelastic range that results in maximal cell spreading.

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