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Part I: Synthesis Of Pyrrolo[1,2-A]Indoles Part Ii: Studies Towards Arboflorine, Michael B. Johansen Nov 2010

Part I: Synthesis Of Pyrrolo[1,2-A]Indoles Part Ii: Studies Towards Arboflorine, Michael B. Johansen

Electronic Thesis and Dissertation Repository

Part one of this thesis focuses on the synthesis of pyrrolo[1,2-a]indoles from nitrones and 1,1-cyclopropanediesters, by way of tetrahydro-1,2-oxazines. A five step synthetic sequence through tetrahydro-1,2-oxazine synthesis, intramolecular Heck reaction, Krapcho dealkoxycarbonylation, reductive N-O bond cleavage, and acid catalyzed transannular alcohol displacement, is developed to access the desired pyrrolo[1,2-a]indoles. Part two of this thesis details the functionalization of indoles by installation of a malonate moiety, by means of copper catalyzed carbenoid reactivity. A wide range of malonyl indoles with varying substitution patterns is shown to be accessible through the developed method. The final chapter focuses on the application of this …


Surface Modifications Of Poly(Dimethylsiloxane) For Biological Application Of Microfluidic Devices, Jessica M. Dechene Oct 2010

Surface Modifications Of Poly(Dimethylsiloxane) For Biological Application Of Microfluidic Devices, Jessica M. Dechene

Electronic Thesis and Dissertation Repository

The spatial control of cellular adhesion is fundamental to the development of studies of cell interaction, cellular microarrays, and cell based biosensors. The ability to pattern cell adhesion on flat substrates and in microfluidic channels is important for locating cell near microdetectors in cell based biosensor devices. Cell adhesion can be controlled by patterning a material's wettability, as cells are able to adhere to hydrophilic surface and will generally avoid hydrophobic materials.

This thesis focuses on patterning the surface wettability of poly(dimethylsilox-ane) (PDMS) in order to spatially control cell adhesion. The polymer is selectively modifed by the deposition of aluminum …