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Characterization of Semiconductor Nanocrystal Assemblies as Components of Optoelectronic Devices

机译:半导体纳米晶体组件作为光电子器件组件的表征

摘要

This dissertation presents new insight into the ability of small molecule passivated NCs to achieve intimate approach distances, despite being well passivated, while developing guiding principles in the area of ligand mediated microstructure control and the resulting macroscopic optical and electronic properties that close packing of high quality NCs enables.udNC ligand coverage will be characterized quantitatively through thermogravimetric analysis (TGA), and qualitatively by photoluminescence and electroluminescence, in the case of functional devices; illustrating the importance of practitioner dependent control of ligand coverage through variations in the dispersion precipitation purification procedure. A unique examination of the relative contribution of energy and charge transfer in NC LEDs will demonstrate the ability to achieve charge transfer, at a level competitive with energy transfer, to well passivated NCs at various wt% loading in a polymer matrix. The observation of potential dependent recombination zones within an active layer further suggest novel, NC surface passivation mediated control of blend microstructure during solution processing towards the development of a bi-continuous network.udNext, NC self-assembly and resulting microstructure dependent optical and electronic properties will be examined through electroluminescence and high-resolution transmission electron microscopy (TEM) micrographs of functional NC/polymer bulk heterojunction LEDs. The joint characterization of NC optical properties, and self-assembly microstructure provide a deeper understanding of the significant and inseparable effects of minimal changes in NC surface passivation on structure and function, and emphasize the potential to rely on strongly passivating ligands to control physical properties and processing parameters concurrently towards higher efficiency devices via low cost processing.udFinally, micro-contact printing of blazed transmission gratings, using stable dispersions of core and core/shell NCs will be shown to produce close packed assemblies of NCs forming near-wavelength luminescent superstructures separated in space. We show the dominant contribution of a two-monolayer thick sharp interface CdS shell to the diffraction efficiency, and necessarily the refractive index, of the NCs, independent of core size. Utilization of these gratings as in-coupling elements at various positions within a device architecture are also examined. These new observations were achieved by unprecedented control of NC architecture during dispersion processing, while maintaining high luminescence, made possible by optimized NC surface passivation. These studies enable the formation of new LED architectures, and new optoelectronic devices based on angle resolved, monochromatic fluorescence from diffraction gratings prepared from simple solution processing approaches. Further, the novel observation of angle amplified interfering fluorescence from these features is argued to be a result of long range radiative coupling and superradiance enabled by the monodispersity and high-quality NC surface passivation described herein.
机译:这篇论文为小分子钝化NCs提供了新的见解,尽管它们被很好地钝化了,但它仍能达到亲密的接近距离,同时在配体介导的微观结构控制以及由此产生的宏观光学和电子特性领域开发了指导原则,从而封闭了高质量的包装 udNC配体的覆盖范围将通过热重分析(TGA)进行定量表征,对于功能性设备,将通过光致发光和电致发光进行定性分析;通过分散沉淀纯化程序的变化说明了从业者依赖控制配体覆盖的重要性。对NC LED中能量和电荷转移的相对贡献进行的独特研究将证明,在聚合物基质中不同重量百分比的负载下,能够以与能量转移竞争的水平实现对良好钝化的NC的电荷转移。在活性层中潜在依赖的重组区的观察进一步表明,在溶液加工过程中,NC表面钝化介导了对混合微结构的新颖控制,从而形成了双连续网络。 udNext,NC自组装以及由此产生的依赖于微结构的光学和电子性能将通过功能性NC /聚合物本体异质结LED的电致发光和高分辨率透射电子显微镜(TEM)显微照片进行检查。 NC光学性能和自组装微结构的共同表征使人们对NC表面钝化的最小变化对结构和功能的显着而密不可分的影响有更深入的了解,并强调了依赖强钝化配体控制物理性质和性能的潜力。最后,通过使用核和核/壳型NC的稳定分散体,闪耀的透射光栅的微接触印刷将显示出紧密堆积的NC组件,从而形成近波长的发光超结构。在空间上分开。我们显示了一个两层厚的尖锐界面CdS壳对NC的衍射效率以及折射率的必不可少的贡献,而与纤芯尺寸无关。还检查了这些光栅在设备体系结构中各个位置上作为耦合元件的利用。这些新的观察结果是通过在分散处理过程中空前控制NC体系结构,同时通过优化的NC表面钝化来保持高发光度而实现的。这些研究使得能够形成新的LED架构,并基于由简单的溶液处理方法制备的衍射光栅产生的基于角度分辨的单色荧光的新型光电器件。此外,据认为这些特征对角度放大干扰荧光的新颖观察是本文所述的单分散性和高质量NC表面钝化所实现的长距离辐射耦合和超辐射的结果。

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    Malfavon-Ochoa Mario;

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  • 年度 2017
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  • 正文语种 en_US
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