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Transformation of Colloidal Quantum Dot: From Intraband Transition to Localized Surface Plasmon Resonance

机译:胶体量子点的转化:从内在转换到局部表面等离子体共振

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摘要

An increase in the carrier density of semiconductor nanocrystals can gradually change the origin of the optical property from the excitonic transition to the localized surface plasmon resonances. Here, we present the evolution of the electronic transition of self-doped Ag2Se colloidal quantum dots, from the intraband transition to the localized surface plasmon resonances along with a splitting of the intraband transition (1P(e)-1S(e)). The minimum fwhm of the split intraband transition is only 23.7 meV, which is exceptionally narrow compared to that of metal oxide nanocrystals showing LSPRs, inferring that the electron-electron scattering is significantly suppressed due to the smaller carrier density. The splitting of the intraband transition mainly results from the asymmetrical crystal structure of the tetragonal Ag2Se CQDs and becomes distinct when the nanocrystal changes its crystal structure from the cubic to tetragonal structure. Maximizing the discrete energy levels in the quantum dot along with mixing with plasmonic characters may provide opportunities to fully harness merits of both the quantum confinement effect and localized surface plasmon resonance characters.
机译:半导体纳米晶体的载流子密度的增加可以逐渐将光学性质的来源从激动的转变转变为局部表面等离子体共振。这里,我们介绍了自掺杂Ag2se胶体量子点的电子转变的演变,从内在表面等离子体谐振以及内侧转变的分裂(1p(e)-1s(e))。分裂内和转换的最小FWHM仅为23.7mEV,与显示LSPRS的金属氧化物纳米晶体相比,其相比特别窄,推断由于载流子密度较小的载体密度显着抑制了电子散射。分裂内癌的分裂主要是由四边形Ag2Se CQD的不对称晶体结构导致,并且当纳米晶体从立方体变化到四边形结构时变得不同。最大化量子点中的离散能级以及与等离子体字符的混合可以为量子限制效果和局部表面等离子体共振特征的完全线束优点提供机会。

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