대구한의대학교 향산도서관

상세정보

부가기능

Temperature-dependent Behavior of Organic Semiconductors

상세 프로파일

상세정보
자료유형학위논문
서명/저자사항Temperature-dependent Behavior of Organic Semiconductors.
개인저자Seifrid, Martin Thomas.
단체저자명University of California, Santa Barbara. Chemistry.
발행사항[S.l.]: University of California, Santa Barbara., 2019.
발행사항Ann Arbor: ProQuest Dissertations & Theses, 2019.
형태사항95 p.
기본자료 저록Dissertations Abstracts International 81-06B.
Dissertation Abstract International
ISBN9781392605264
학위논문주기Thesis (Ph.D.)--University of California, Santa Barbara, 2019.
일반주기 Source: Dissertations Abstracts International, Volume: 81-06, Section: B.
Advisor: Bazan, Guillermo C.
이용제한사항This item must not be sold to any third party vendors.This item must not be added to any third party search indexes.
요약Many properties of organic semiconductors, such as charge transport or optical absorbance, are governed by the solid-state organization of the material, which is in turn determined by its chemical structure. Developing a fundamental understanding of molecular features that can be used to control the solid-state properties of organic semiconductors is key to designing materials with improved performance or unique new properties. In my research, I have employed a diverse set of techniques, such as theory, experiment and device characterization, to better understand the relationship between molecular structure and solid-state properties of molecular organic semiconductors. Herein, the relationship between the chemical structure of molecular and oligomeric organic semiconductors and their response to thermal stresses and changes in temperature are described. First, I will describe the tolerance of an organic field-effect transistor to operation at temperatures up to 200 쨘C and over multiple high-temperature cycles, with only slight changes in charge carrier mobility and properties. The active layer of this device is composed of an oligomeric organic semiconductor whose structure is very similar to that of two well-known ambipolar conjugated polymers. Heating to 200 쨘C or above results in appearance ambipolar charge transport in the oligomeric active layer as well. Then, the solid-state organization of a nearly isostructural series of oligomeric organic semiconductors-including the material discussed above-is characterized. As-cast, the first half of the series orients edge-on relative to the substrate while the second half is oriented face-on. This difference is likely due to kinetic trapping during the spin-coating process because melt-annealing of thin films of the four different materials results in edge-on orientation of crystallites for all four molecules. Finally, I describe a combined theoretical and experimental approach to probing aspects of molecular organization and topology based on solid-state NMR. Using this approach, a previously hypothesized change in molecular shape upon crystallization of a molecular organic semiconductor is confirmed. The novel molecular design element of a tail-to-tail couple hexyl-bithiophene core removes the trade-off between solubility and solid-state order in molecular semiconductors.
일반주제명Chemistry.
Materials science.
언어영어
바로가기URL : 이 자료의 원문은 한국교육학술정보원에서 제공합니다.

서평(리뷰)

  • 서평(리뷰)

태그

  • 태그

나의 태그

나의 태그 (0)

모든 이용자 태그

모든 이용자 태그 (0) 태그 목록형 보기 태그 구름형 보기
 
로그인폼