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Colloidal CdSe/Cu3P/CdSe nanocrystal heterostructures and their evolution upon thermal annealing

机译:CdSe / Cu3P / CdSe胶体纳米晶体异质结构及其在热退火下的演化

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We report the synthesis of colloidal CdSe/Cu_3P/CdSe nanocrystal heterostructures grown from hexagonal Cu_3P platelets as templates. One type of heterostructure was a sort of "coral", formed by vertical pillars of CdSe grown preferentially on both basal facets of a Cu_3P platelet and at its edges. Another type of heterostructure had a "sandwich" type of architecture, formed by two thick, epitaxial CdSe layers encasing the original Cu_3P platelet. When the sandwiches were annealed under vacuum up to 450 °C, sublimation of P and Cd species with concomitant interdiffusion of Cu and Se species was observed by in situ HR- and EFTEM analyses. These processes transformed the starting sandwiches into Cu 2Se nanoplatelets. Under the same conditions, both the pristine (uncoated) Cu_3P platelets and a control sample made of isolated CdSe nanocrystals were stable. Therefore, the thermal instability of the sandwiches under vacuum might be explained by the diffusion of Cu species from Cu _3P cores into CdSe domains, which triggered sublimation of Cd, as well as out-diffusion of P species and their partial sublimation, together with the overall transformation of the sandwiches into Cu_2Se nanocrystals. A similar fate was followed by the coral-like structures. These CdSe/Cu _3P/CdSe nanocrystals are therefore an example of a nanostructure that is thermally unstable, despite its separate components showing to be stable under the same conditions.
机译:我们报告从六角形的Cu_3P血小板生长为模板的胶体CdSe / Cu_3P / CdSe纳米晶体异质结构的合成。一种异质结构是一种“珊瑚”,由优先在Cu_3P血小板的两个基面及其边缘生长的CdSe垂直柱形成。另一类异质结构具有“三明治”型结构,由包裹原始Cu_3P血小板的两个厚外延CdSe层形成。当三明治在真空中退火至450°C时,通过原位HR-和EFTEM分析观察到P和Cd物种升华,同时Cu和Se物种相互扩散。这些过程将起始三明治转变为Cu 2Se纳米片。在相同条件下,原始(未包被)Cu_3P血小板和由分离的CdSe纳米晶体制成的对照样品均稳定。因此,三明治夹层在真空下的热不稳定性可能是由于Cu物种从Cu _3P核扩散到CdSe畴中而引起的,这引发了Cd的升华,以及P物种的外扩散和部分升华。三明治的整体转变为Cu_2Se纳米晶体。类似的命运之后是类似珊瑚的结构。这些CdSe / Cu _3P / CdSe纳米晶体因此是热不稳定的纳米结构的一个实例,尽管其单独的成分在相同条件下也显示出稳定。

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