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首页> 外文期刊>Journal of the American Chemical Society >Radiative Recombination Of Spatially Extended Excitons In (znse/cds)/cds Heterostructured Nanorods
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Radiative Recombination Of Spatially Extended Excitons In (znse/cds)/cds Heterostructured Nanorods

机译:(znse / cds)/ cds异质结构纳米棒中空间扩展激子的辐射复合

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摘要

We report on organometallic synthesis of luminescent (ZnSe/CdS)/CdS semiconductor heterostructured nanorods (hetero-NRs) that produce an efficient spatial separation of carriers along the main axis of the structure (type II carrier localization). Nanorods were fabricated using a seeded-type approach by nucleating the growth of 20-100 nm CdS extensions at [000 ± 1] facets of wurtzite ZnSe/CdS core/ shell nanocrystals. The difference in growth rates of CdS in each of the two directions ensures that the position of ZnSe/CdS seeds in the final structure is offset from the center of hetero-NRs, resulting in a spatially asymmetric distribution of carrier wave functions along the heterostructure. Present work demonstrates a number of unique properties of (ZnSe/CdS)/CdS hetero-NRs, including enhanced magnitude of quantum confined Stark effect and subnanosecond switching of absorption energies that can find practical applications in electroabsorption switches and ultrasensitive charge detectors.
机译:我们报告发光(ZnSe / CdS)/ CdS半导体异质纳米棒(hetero-NRs)的有机金属合成,沿着结构的主轴产生有效的空间分离(II型载流子定位)。纳米棒是使用种子型方法通过在纤锌矿型ZnSe / CdS核/壳纳米晶体的[000±1]面上成核20-100 nm CdS延伸的生长而制成的。 CdS在两个方向上每个方向的生长速率的差异确保了最终结构中ZnSe / CdS种子的位置偏离异质NR的中心,从而导致载波功能沿着异质结构在空间上不对称分布。目前的工作证明了(ZnSe / CdS)/ CdS杂散NR的许多独特特性,包括量子限制的Stark效应的增强幅度和亚纳秒级的吸收能量转换,可以在电吸收开关和超灵敏电荷检测器中找到实际应用。

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