首页> 外文期刊>Scientific reports. >Multiple exciton generation induced enhancement of the photoresponse of pulsed-laser-ablation synthesized single-wall-carbon-nanotube/PbS-quantum-dots nanohybrids
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Multiple exciton generation induced enhancement of the photoresponse of pulsed-laser-ablation synthesized single-wall-carbon-nanotube/PbS-quantum-dots nanohybrids

机译:多种激子产生诱导脉冲激光烧蚀合成的单壁碳纳米管/ PbS-量子点纳米杂化物的光响应增强

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The pulsed laser deposition method was used to decorate appropriately single wall carbon nanotubes (SWCNTs) with PbS quantum dots (QDs), leading to the formation of a novel class of SWCNTs/PbS-QDs nanohybrids (NHs), without resorting to any ligand engineering and/or surface functionalization. The number of laser ablation pulses (NLp) was used to control the average size of the PbS-QDs and their coverage on the SWCNTs’ surface. Photoconductive (PC) devices fabricated from these SWCNTs/PbS-QDs NHs have shown a significantly enhanced photoresponse, which is found to be PbS-QD size dependent. Wavelength-resolved photocurrent measurements revealed a strong photoconductivity of the NHs in the UV-visible region, which is shown to be due to multiple exciton generation (MEG) in the PbS-QDs. For the 6.5?nm-diameter PbS-QDs (with a bandgap (Eg)?=?0.86?eV), the MEG contribution of the NHs based PC devices was shown to lead to a normalized internal quantum efficiency in excess of 300% for photon energies ≥4.5Eg. While the lowest MEG threshold in our NHs based PC devices is found to be of ~2.5Eg, the MEG efficiency reaches values as high as 0.9?±?0.1.
机译:脉冲激光沉积方法用于用PbS量子点(QD)适当地装饰单壁碳纳米管(SWCNT),从而导致无需借助任何配体工程就可以形成新型的SWCNTs / PbS-QDs纳米杂化物(NHs)和/或表面功能化。激光烧蚀脉冲的数量(N Lp )用于控制PbS-QD的平均尺寸及其在SWCNT表面的覆盖率。由这些SWCNT / PbS-QD NHs制成的光电导(PC)器件显示出显着增强的光响应,这与PbS-QD尺寸有关。波长分辨的光电流测量结果表明,NHs在紫外可见区域具有很强的光电导性,这被证明是由于PbS-QD中产生了多个激子产生(MEG)。对于直径为6.5?nm的PbS-QD(带隙(Eg)?=?0.86?eV),基于NHs的PC器件的MEG贡献导致归一化内部量子效率超过300%。光子能量≥4.5Eg。虽然发现我们基于NHs的PC设备中的最低MEG阈值为〜2.5Eg,但MEG效率高达0.9?±?0.1。

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