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Western Kentucky University

Semiconductors

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Thiophene And Derivatives For Use In Pyridazines And Thiapentalenes, Benjamin Tyree Cannon May 2015

Thiophene And Derivatives For Use In Pyridazines And Thiapentalenes, Benjamin Tyree Cannon

Masters Theses & Specialist Projects

This thesis introduces the idea of Band Theory and how it can be used to describe a solid-state materials ability to carry an electrical charge. Next, this thesis defines what makes a material a conductor, semiconductor, or insulator. Semiconductors are attracting interest in chemistry, as well as in the manufacturing of consumer electronics, because of their ability to carry a charge, without the risk of short-circuiting like traditional conductors.1,4 Organic semiconductors, which behave differently than traditional semiconductors, are of particular interest because they offer mechanical flexibility, lowcost, simplicity, and the ability to be manufactures at low temperatures.6 Nonorganic and organic …


Synthesis And Structure Of A Substituted Pyridazine, Kiranmai Byrichetti Aug 2011

Synthesis And Structure Of A Substituted Pyridazine, Kiranmai Byrichetti

Masters Theses & Specialist Projects

Pyridazines are heterocyclic compounds with an N-N bond in their ring structure. Heterocyclic aromatic compounds are of great interest as a result of their novel properties and commercial applications. Our current research is focused on the potential role of pyridazines in next generation electronic devices that utilize organics as the semiconducting material. The synthesis of 5, 6-fused ring pyridazines beginning from fulvenes (Scheme 1) is described herein. These fused heterocycles will serve as synthetic models and building blocks for potential organic or organometallic conducting polymers.

Our goal was to modify the route of Snyder et al. previously reported for the …


Chemistry - Acs Certification, Daniel Hinson May 2011

Chemistry - Acs Certification, Daniel Hinson

Mahurin Honors College Capstone Experience/Thesis Projects

Heterocyclic organic and organometallic compounds (e.g. polypyrrole, Figure 1A) and their derivatives have been of great interest for conductive polymers due to their novel properties, such as their versatile structure and ease of synthesis. In addition, these molecules have a great environmental stability compared to non-aromatic analogs (e.g. polyacetylene, Figure 1B). We have been interested in synthesizing organometallic pyridazyl (Figure 1C) complexes for polymer research. Figure 1. Structures of A–D. Pyridazyl complexes of rhenium were synthesized in three steps beginning from 1,2-diacylcyclopentadienes (aka, fulvenes, Figure 1D). Synthesis, characterization and molecular structure of [Mn(CO)3{1,2-C5H3(CC4H3ON)(CC4H3ON)}] (4A), [Re(CO)3{1,2-C5H3(CC4H3ON)(CC4H3ON)}] (4B), and their precursors are …