首页> 外文OA文献 >CHARACTERIZATION OF THE SIZE-QUANTIZED ELECTRONIC AND OPTICAL PROPERTIES OF CdSe NANOCRYSTALS FOR APPLICATIONS IN PHOTOCATALYSIS, SOLAR CELLS AND DIFFRACTION GRATINGS
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CHARACTERIZATION OF THE SIZE-QUANTIZED ELECTRONIC AND OPTICAL PROPERTIES OF CdSe NANOCRYSTALS FOR APPLICATIONS IN PHOTOCATALYSIS, SOLAR CELLS AND DIFFRACTION GRATINGS

机译:CdSe纳米晶的量子化电子和光学性质的表征,用于光催化,太阳能电池和衍射光栅

摘要

This dissertation presents novel applications of ligand-capped II-VI semiconductor nanocrystals (i.e. CdSe and CdTe).Hybrid polymer-nanocrystal thin films were prepared using a bottom-up electrochemical crosslinking method, where thiophene-functionalized CdSe NCs were wired to electron-rich 3,4-dioxy-substituded thiophene polymers. Both nanocomposite and effective monolayer (EML) films were achieved by controlling monomer feed ratios during the crosslinking steps. These hybrid thin films showed enhanced photoelectrochemical current efficiencies with a variety of solution acceptor molecules compared to polymer control films, which was due to sensitization by the CdSe NCs. The electronic structure of the polymer played a critical role in the potential (doping) dependent hole capture efficiency from photoexcited CdSe NCs. Furthermore, photocurrent efficiencies were correlated with nanocrystal size, which was a direct product of frontier orbital energy shifting due to quantum confinement effects.All-inorganic CdTe-CdSe nanocrystal solar cells were fabricated by a facile layer-by-layer procedure. A low-temperature sintering strategy was utilized to electronically couple the nanocrystal thin films, which maintained the individual electronic properties of the nanocrystals. The electrical characteristics of these solar cells displayed predictable trends in open circuit voltage with varying CdSe NC diameter.Novel CdSe NC diffraction gratings were prepared by a facile microcontact molding procedure. These transmission gratings showed exceptionally high diffraction efficiencies that were dependent on optimum grating morphologies and the refractive index contrast provided by the nanocrystals, which was size-dependent. These films also showed promise as coupling gratings for internal reflection elements.
机译:提出了配体封端的II-VI族半导体纳米晶体(即CdSe和CdTe)的新应用。采用自下而上的电化学交联方法制备了杂化聚合物-纳米晶体薄膜,其中噻吩官能化的CdSe NCs与富电子的纳米线连接。 3,4-二氧基取代的噻吩聚合物。纳米复合膜和有效单层(EML)膜都是通过控制交联步骤中的单体进料比来实现的。与聚合物控制薄膜相比,这些杂化薄膜在多种溶液受体分子的作用下显示出更高的光电化学电流效率,这归因于CdSe NCs的敏化作用。聚合物的电子结构在光激发的CdSe NCs的势能(掺杂)依赖性空穴捕获效率中起着关键作用。此外,光电流效率与纳米晶体尺寸相关,纳米晶体尺寸是由于量子限制效应而引起的前沿轨道能量转移的直接产物。通过简便的逐层工艺制造全无机CdTe-CdSe纳米晶体太阳能电池。利用低温烧结策略将纳米晶体薄膜电耦合,从而保持了纳米晶体的各个电子特性。这些太阳能电池的电学特性在CdSe NC直径变化的情况下显示出可预测的开路电压趋势。通过便捷​​的微接触成型工艺制备了新颖的CdSe NC衍射光栅。这些透射光栅显示出极高的衍射效率,这取决于最佳的光栅形态和纳米晶体所提供的折射率对比度,而纳米晶体的尺寸对比度则取决于晶体。这些膜还有望作为内部反射元件的耦合光栅。

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    Shallcross Richard Clayton;

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  • 年度 2009
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