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GaP-ZnS 伪二元合金纳米线。

GaP-ZnS pseudobinary alloy nanowires.

机构信息

Department of Chemistry, Korea University , Jochiwon 339-700, Korea.

出版信息

Nano Lett. 2014 Oct 8;14(10):5912-9. doi: 10.1021/nl5028843. Epub 2014 Sep 22.

Abstract

Multicomponent nanowires (NWs) are of great interest for integrated nanoscale optoelectronic devices owing to their widely tunable band gaps. In this study, we synthesize a series of (GaP)(1-x)(ZnS)(x) (0 ≤ x ≤ 1) pseudobinary alloy NWs using the vapor transport method. Compositional tuning results in the phase evolution from the zinc blende (ZB) (x < 0.4) to the wurtzite (WZ) phase (x > 0.7). A coexistence of ZB and WZ phases (x = 0.4-0.7) is also observed. In the intermediate phase coexistence range, a core-shell structure is produced with a composition of x = 0.4 and 0.7 for the core and shell, respectively. The band gap (2.4-3.7 eV) increases nonlinearly with increasing x, showing a significant bowing phenomenon. The phase evolution leads to enhanced photoluminescence emission. Strikingly, the photoluminescence spectrum shows a blue-shift (70 meV for x = 0.9) with increasing excitation power, and a wavelength-dependent decay time. Based on the photoluminescence data, we propose a type-II pseudobinary heterojunction band structure for the single-crystalline WZ phase ZnS-rich NWs. The slight incorporation of GaP into the ZnS induces a higher photocurrent and excellent photocurrent stability, which opens up a new strategy for enhancing the performance of photodetectors.

摘要

多组分纳米线(NWs)由于其可调谐的带隙,在集成纳米光电设备中引起了极大的兴趣。在这项研究中,我们使用气相传输法合成了一系列(GaP)(1-x)(ZnS)(x)(0 ≤ x ≤ 1)的伪二元合金 NWs。组成调谐导致从闪锌矿(ZB)(x < 0.4)到纤锌矿(WZ)相(x > 0.7)的相演化。还观察到 ZB 和 WZ 相的共存(x = 0.4-0.7)。在中间相共存范围内,产生了具有 x = 0.4 和 0.7 的核壳结构的核壳结构。带隙(2.4-3.7 eV)随 x 的增加呈非线性增加,表现出明显的翘曲现象。相演化导致光致发光发射增强。引人注目的是,光致发光光谱随着激发功率的增加显示出蓝移(x = 0.9 时为 70 meV)和波长相关的衰减时间。基于光致发光数据,我们提出了单晶硅 WZ 相 ZnS 富 NWs 的 II 型赝二元异质结能带结构。GaP 的少量掺入 ZnS 会引起更高的光电流和出色的光电流稳定性,这为增强光电探测器的性能开辟了新的策略。

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