首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Nonradiative Energy Transfer between Doped and Undoped Flat Semiconductor Nanocrystals of Colloidal Quasi-2D Nanoplatelets
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Nonradiative Energy Transfer between Doped and Undoped Flat Semiconductor Nanocrystals of Colloidal Quasi-2D Nanoplatelets

机译:掺杂和未掺杂的扁平半导体纳米晶体之间的非相互能量转移胶体拟纳米纳米纳米纳米粒子

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摘要

Atomically flat colloidal semiconductors such as nanoplatelets (NPLs) promise great potential for different optoelectronic applications. Here, we systematically investigate the excitonic energy transfer from colloidal Cu-doped CdSe to undoped core/shell CdSe/CdS nanoplatelets via steady-state and time-resolved photoluminescence spectros-copy techniques. We show the strong quenching in photoluminescence emission of the doped NPL donors together with significant modifications in the time-resolved kinetics by changing the concentration of the undoped NPL acceptors in close proximity. This newly presented all-colloidal and all-quasi-2D doped-undoped NPL-NPL hybrid system shows near-unity room-temperature energy transfer efficiency (99%) in solid films. We strongly believe that such highly efficient energy transfer in doped-undoped hybrid films will create more interest in the scientific community to further explore different donor/acceptor combinations with these newly reported doped NPLs for next-generation energy harvesting applications.
机译:原子扁平胶体半导体如纳米孔(NPLS)承诺对不同光电应用的巨大潜力。在这里,我们通过稳态和时间分辨的光致发光光谱 - 复制技术系统地研究了从胶体Cu掺杂Cdse到未掺杂的核/壳Cdse / Cds纳米克隆纳米克隆的激动能量转移。我们通过改变密切接近的未掺杂的NPL受体的浓度,在掺杂NPL供体中的光致发光发射在掺杂NPL供体的光致发光发射中的强烈猝灭,与时分 - 分辨的动力学。这种新呈现的全胶体和全曲2D掺杂未掺杂的NPL-NPL杂交系统在实体薄膜中显示出近乎统一的室温能量转移效率(99%)。我们强烈认为,这种高效的掺杂未掺杂的混合膜的能量转移将对科学界产生更多的兴趣,以进一步探索不同的供体/受体组合,这些新报告的掺杂NPLS用于下一代能量收集应用。

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