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Direct Correlation between Structural and Optical Properties of III-V Nitride Nanowire Heterostructures with Nanoscale Resolution

机译:具有纳米级分辨率的III-V氮化物纳米线异质结构的结构和光学性质之间的直接关联

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摘要

Direct correlation of structural and optical properties on the nanoscale is essential for rational synthesis of nanomaterials with predefined structure and functionality. We study optical properties of single III-V nitride nanowire radial heterostructures with measured spatial resolution of <20 nm using cathodoluminescence (CL) technique coupled with scanning transmission electron microscopy (STEM). Enhanced carrier recombination in nanowire quantum wells and reduced light emission from regions containing structural defects were directly observed. Using newly developed parallel-detection-mode CL-STEM, we show that optical properties can vary within a single nanowire heterostructure as a function of nanowire morphology.
机译:纳米级结构和光学性质的直接相关对于合理合成具有预定结构和功能的纳米材料至关重要。我们使用阴极发光(CL)技术结合扫描透射电子显微镜(STEM)研究了测量的空间分辨率<20 nm的单III-V氮化物纳米线径向异质结构的光学性质。直接观察到纳米线量子阱中增强的载流子复合以及来自包含结构缺陷的区域的发光减少。使用新开发的并行检测模式CL-STEM,我们显示出光学特性可以在单个纳米线异质结构内随纳米线形态的变化而变化。

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