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Photoluminescence of colloidal CdSe nano-tetrapods and quantum dots in oxygenic and oxygen-free environments

机译:在无氧和无氧环境中,胶体CdSe纳米四足体和量子点的光致发光

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The effects of oxygenic versus oxygen-free environments on colloidal CdSe nano-tetrapods and quantum dots (QDs) were studied using both continuous and time-resolved photoluminescence (PL) measurements. The decays of PL intensities for tetrapods and QDs in oxygen-free solution (chloroform) and in air (on silicon) can be well fitted by a bi-exponential function. Based on the emission-energy dependence of carrier lifetimes and the amplitude ratio of the fast-decay component to the slow-decay component, the fast and slow PL decays of CdSe nanocrystals are attributed to the recombination of delocalized carriers in the core states and localized carriers in the surface states, respectively. The PL intensities of CdSe nano-tetrapods and QDs were found to be five times and an order of magnitude higher in air than in vacuum, respectively, which is explained by the passivation of surface defects by the polar gas (oxygen) absorption. The lower enhancement in PL intensities of CdSe nano-tetrapods is explained by the special morphology of the tetrapods.
机译:使用连续和时间分辨光致发光(PL)测量,研究了有氧与无氧环境对CdSe纳米胶体和量子点(QDs)的影响。在无氧溶液(氯仿)和空气(硅中)中,四足动物和QD的PL强度衰减可以通过双指数函数很好地拟合。基于载流子寿命的发射能量依赖性以及快衰变组分与慢衰变组分的振幅比,CdSe纳米晶体的快慢PL衰变归因于在中心态和局部位置的离域载流子的重组。载体分别处于表面状态。发现CdSe纳米四脚架和QD的PL强度在空气中分别比在真空中高五倍和一个数量级,这可以通过极性气体(氧气)的吸收使表面缺陷钝化来解释。 CdSe纳米四脚架的PL强度增强较低的原因是四脚架的特殊形态。

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