Synthesis of Small, Chiral, and Photoswitchable Cycloparaphenylenes

dc.contributor.advisorTyler, David
dc.contributor.authorEvans, Paul
dc.date.accessioned2015-08-18T23:06:15Z
dc.date.available2015-08-18T23:06:15Z
dc.date.issued2015-08-18
dc.description.abstractCycloparaphenylenes (CPPs) represent the unit-cycles of conductive armchair carbon nanotubes (CNTs). In addition to their utility for the bottom-up synthesis of CNTs with discrete diameter and chirality, these strained hydrocarbon macrocycles have attractive properties of their own for material science and organic electronics. Herein I report research focused on advancing the synthetic technology behind CPPs, culminating in the synthesis of [5]CPP, the smallest and most highly-strained member of the CPP series to date, as well as the derivitization of the CPP platform to include chiral nanohoops with a spiral carbon backbone and photoswitchable nanohoops based on azobenzene incorporation into the CPP architecture. The synthesis and characterization of [5]CPP, 1,5-naphthyl[6]CPP, azo[11]CPP, and azo[9]CPP are reported along with advanced intermediates towards rotationally restricted 2,6-naphthyl[6]CPP and preliminary photoisomerization results for azo[11]CPP and azo[9]CPP. This dissertation contains both previously published and unpublished co-authored material.en_US
dc.identifier.urihttps://hdl.handle.net/1794/19282
dc.language.isoen_US
dc.publisherUniversity of Oregon
dc.rightsAll Rights Reserved.
dc.subjectcycloparaphenyleneen_US
dc.subjectsynthesisen_US
dc.titleSynthesis of Small, Chiral, and Photoswitchable Cycloparaphenylenes
dc.typeElectronic Thesis or Dissertation
thesis.degree.disciplineDepartment of Chemistry and Biochemistry
thesis.degree.grantorUniversity of Oregon
thesis.degree.leveldoctoral
thesis.degree.namePh.D.

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