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THE APPLICATION OF ELECTROCHEMISTRY AND ORGANIC CHEMISTRY IN POLYMER SYNTHESIS AND BATTERY ELECTRODE DESIGN

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Abstract

The following chapters detail the use of electrochemistry in synthesizing multiblock copolymers from a single solution and the application of organic polymer cathodes as high-rate cathode materials. Chapter two focuses on the development of a cationic polymerization of isobutyl vinyl ether, utilizing an electric stimulus to control polymer initiation, propagation and reversible termination. Chapters three and four pair electrochemically-controlled cationic polymerizations with photocontrolled radical polymerizations and report methods to synthesize block copolymers of vinyl ethers and methyl acrylate. In chapters six through eight, organic polymer cathodes are reported which can tolerate high charge and discharge rates. In chapter nine, a relationship between polymer crystallinity and charge storage mechanism in organic cathodes is proposed, wherein disrupting ordering in the charge storage material results in less diffusion-limited charge storage processes.

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366 pages

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Date Issued

2020-08

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Keywords

Batteries; Electrochemistry; Organic; Polymers

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Union Local

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Committee Chair

Fors, Brett P.

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Committee Member

Abruna, Hector D.
Coates, Geoffrey

Degree Discipline

Chemistry and Chemical Biology

Degree Name

Ph. D., Chemistry and Chemical Biology

Degree Level

Doctor of Philosophy

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Government Document

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dissertation or thesis

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