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首页> 外文期刊>ACS nano >Mn2+-Doped CdSe/CdS Core/Multishell Colloidal Quantum Wells Enabling Tunable Carrier-Dopant Exchange Interactions
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Mn2+-Doped CdSe/CdS Core/Multishell Colloidal Quantum Wells Enabling Tunable Carrier-Dopant Exchange Interactions

机译:Mn2 +掺杂的CdSe / CdS核/多壳胶体量子阱,实现可调谐的载流子-掺杂交换相互作用

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In this work, we report the manifestations of carrier-dopant exchange interactions in colloidal Mn2+-doped CdSe/CdS core/multishell quantum wells. The carrier magnetic ion exchange interaction effects are tunable through wave function engineering. In our quantum well heterostructures, manganese was incorporated by growing a Cd0.985Mn0.015S monolayer shell on undoped CdSe nanoplatelets using the colloidal atomic layer deposition technique. Unlike previously synthesized Mn2+-doped colloidal nanostructures, the location of the Mn ions was controlled with atomic layer precision in our heterostructures. This is realized by controlling the spatial overlap between the carrier wave functions with the manganese ions by adjusting the location, composition, and number of the CdSe, Cd1-xMnxS, and CdS layers. The photoluminescence quantum yield of our magnetic heterostructures was found to be as high as 20% at room temperature with a narrow photoluminescence bandwidth of similar to 22 nm. Our colloidal quantum wells, which exhibit magneto-optical properties analogous to those of epitaxially grown quantum wells, offer new opportunities for solution-processed spin-based semiconductor devices.
机译:在这项工作中,我们报告了在胶体Mn2 +掺杂的CdSe / CdS核/多壳量子阱中载流子-掺杂剂交换相互作用的表现。载体磁离子交换相互作用的作用可通过波函数工程来调节。在我们的量子阱异质结构中,通过使用胶体原子层沉积技术在未掺杂的CdSe纳米片上生长Cd0.985Mn0.015S单层壳来掺入锰。与先前合成的掺杂Mn2 +的胶体纳米结构不同,在我们的异质结构中,以原子层精度控制Mn离子的位置。这是通过调节CdSe,Cd1-xMnxS和CdS层的位置,组成和数量来控制载波功能与锰离子之间的空间重叠来实现的。我们的磁性异质结构的光致发光量子产率在室温下高达20%,并且窄的光致发光带宽接近22 nm。我们的胶体量子阱具有类似于外延生长的量子阱的磁光特性,为溶液处理的自旋基半导体器件提供了新的机遇。

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