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首页> 外文期刊>Nanoscale >Colloidal synthesis and optical properties of type-II CdSe-CdTe and inverted CdTe-CdSe core-wing heteronanoplatelets
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Colloidal synthesis and optical properties of type-II CdSe-CdTe and inverted CdTe-CdSe core-wing heteronanoplatelets

机译:胶体的合成及光学性质的二型CdSe-CdTe和倒CdTe-CdSecore-wing heteronanoplatelets

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We developed colloidal synthesis to investigate the structural and electronic properties of CdSe-CdTe and inverted CdTe-CdSe heteronanoplatelets and experimentally demonstrate that the overgrowth of cadmium selenide or cadmium telluride core nanoplatelets with counterpartner chalcogenide wings leads to type-II heteronanoplatelets with emission energies defined by the bandgaps of the CdSe and CdTe platelets and the characteristic band offsets. The observed conduction and valence band offsets of 0.36 eV and 0.56 eV are in line with theoretical predictions. The presented type-II heteronanoplatelets exhibit efficient spatially indirect radiative exciton recombination with a quantum yield as high as 23%. While the exciton lifetime is strongly prolonged in the investigated type-II 2D systems with respect to 2D type-I systems, the occurring 2D giant oscillator strength (GOST) effect still leads to a fast and efficient exciton recombination. This makes type-II heteronanoplatelets interesting candidates for low threshold lasing applications and photovoltaics.
机译:我们开发了胶体合成进行调查的结构和电子性质CdSe-CdTe和反向CdTe-CdSeheteronanoplatelets和实验表明镉的过度生长硒化或核心nanoplatelets碲化镉导致与counterpartner硫族化物的翅膀ⅱ型heteronanoplatelets与排放能量由带隙CdSe和定义CdTe血小板和带特征偏移量。补偿0.36 eV和0.56 eV符合理论预测。heteronanoplatelets表现出高效的空间间接辐射激子复合了量子产率高达23%。一生强烈持久研究二型对2 d系统2 d i型系统,发生2 d的巨人振子强度(鬼)效果仍然会导致快速和有效的激子复合。让二型heteronanoplatelets有趣候选人低阈值激光的应用程序和光伏发电。

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