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Mercury Telluride Colloidal Quantum Dots: Electronic Structure, Size-Dependent Spectra, and Photocurrent Detection up to 12 μm

机译:碲化汞胶体量子点:电子结构,尺寸依赖性光谱和最大12μm的光电流检测

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摘要

HgTe colloidal quantum dots are synthesized with high monodispersivity with sizes up to ~15 nm corresponding to a room temperature absorption edge at ~5 μm. The shape is tetrahedral for larger sizes and up to five peaks are seen in the absorption spectra with a clear size dependence. The size range of the HgTe quantum dots is extended to ~20 nm using regrowth. The corresponding room temperature photoluminescence and absorption edge reach into the long-wave infrared, past 8 μm. Upon cooling to liquid nitrogen temperature, a photoconductive response is obtained in the long-wave infrared region up to 12 μm. Configuration-interaction tight-binding calculations successfully explain the spectra and the size dependence. The five optical features can be assigned to sets of single hole to single electron transitions whose strengths are strongly influenced by the multiband/multiorbital character of the quantum-dot electronic states.
机译:HgTe胶体量子点具有较高的单分散性,其尺寸最大为〜15 nm,对应于〜5μm的室温吸收边缘。对于较大尺寸,其形状为四面体,在吸收光谱中最多可以看到五个峰,且具有明显的尺寸依赖性。 HgTe量子点的尺寸范围利用再生长扩展到了约20 nm。相应的室温光致发光和吸收边缘达到长波红外,超过8μm。冷却至液氮温度后,在长达12μm的长波红外区域中获得光电导响应。构型相互作用紧密结合计算成功地解释了光谱和尺寸依赖性。这五个光学特征可以分配给单空穴到单电子跃迁的集合,其强度受量子点电子态的多带/多轨道特性强烈影响。

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