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首页> 外文期刊>Nanoscale >Cation exchange synthesis of uniform PbSe/PbS core/shell tetra-pods and their use as near-infrared photodetectors
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Cation exchange synthesis of uniform PbSe/PbS core/shell tetra-pods and their use as near-infrared photodetectors

机译:阳离子交换的综合统一的硒化铅/ PbS核/壳tetra-pods及其使用近红外光电探测器

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In this work we explore the preparation of complex-shaped semiconductor nanostructures composed of different materials via a cationic exchange process in which the cations of the original semiconductor nanostructure are replaced by cations of different metals with preservation of the shape and the anionic framework of the nanocrystals. Utilizing this cation exchange method, we synthesized two new tetrapods for the first time: Cu2-xSe/Cu2-xS and PbSe/PbS, both prepared from CdSe/CdS tetrapods as 'templates'. We also fabricated near-infrared (NIR) photodetectors with a very simple architecture comprising a PbSe/PbS tetrapod layer between two Au electrodes on a glass substrate. When illuminated by a NIR laser, these devices are capable of achieving a responsivity of 11.9 A W-1 without the use of ligand-exchange processes, thermal annealing or hybrid device architecture. Transient absorption spectroscopy was carried out on these PbSe/PbS tetrapods, the results of which suggest that the branched morphology contributes in part to device performance. Investigation of the charge dynamics of the PbSe/PbS tetrapods revealed an extremely long-lived exciton recombination lifetime of similar to 17 ms, which can result in enhanced photoconductive gain. Overall, these heterostructured tetrapods showcase simultaneously the importance of nanoparticle shape, band structure, and surface chemistry in the attainment of NIR photodetection.
机译:在这个工作我们探索的准备较薄的半导体纳米结构通过阳离子组成的不同的材料的阳离子的交换过程最初的半导体纳米结构所取代不同的金属阳离子的保存的形状和阴离子框架纳米晶体。方法,我们合成了两个新的四足动物第一次:Cu2-xSe / Cu2-xS和硒化铅/ PbS准备从CdSe / cd四足动物为“模板”。我们也制作近红外(NIR)光电探测器和一个非常简单的架构由硒化铅/ PbS四足动物的两层非盟在玻璃衬底电极。近红外激光照明,这些设备能够实现w1 11.9的响应率不使用ligand-exchange流程,热退火或混合设备的架构。瞬态吸收光谱在这些硒化铅/ PbS四足动物,它的结果表明分支形态的贡献部分设备的性能。硒化铅的电荷动力学/ PbS四足动物显示非常长寿的激子类似于17女士复合寿命,会导致增强的光电导增益。总的来说,这些用四足动物同时展示的重要性纳米颗粒的形状、能带结构和表面化学素养的近红外光谱光电探测。

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