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Synthesis of Monodisperse Nanocrystals via Microreaction: Open-to-Air Synthesis with Oleylamine as a Coligand

机译:通过微反应合成单分散纳米晶体:以油胺为配体的露天合成

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摘要

Microreaction provides a controllable tool to synthesize CdSe nanocrystals (NCs) in an accelerated fashion. However, the surface traps created during the fast growth usually result in low photoluminescence (PL) efficiency for the formed products. Herein, the reproducible synthesis of highly luminescent CdSe NCs directly in open air was reported, with a microreactor as the controllable reaction tool. Spectra investigation elucidated that applying OLA both in Se and Cd stock solutions could advantageously promote the diffusion between the two precursors, resulting in narrow full-width-at-half maximum (FWHM) of PL (26 nm). Meanwhile, the addition of OLA in the source solution was demonstrated helpful to improve the reactivity of Cd monomer. In this case, the focus of size distribution was accomplished during the early reaction stage. Furthermore, if the volume percentage (vol.%) of OLA in the precursors exceeded a threshold of 37.5%, the resulted CdSe NCs demonstrated long-term fixing of size distribution up to 300 s. The observed phenomena facilitated the preparation of a size series of monodisperse CdSe NCs merely by the variation of residence time. With the volume percentage of OLA as 37.5% in the source solution, a 78 nm tuning of PL spectra (from 507 to 585) was obtained through the variation of residence time from 2 s to 160 s, while maintaining narrow FMWH of PL (26–31 nm) and high QY of PL (35–55%).
机译:微反应提供了一种可控工具,可以加速合成CdSe纳米晶体(NC)。但是,在快速生长过程中产生的表面陷阱通常会导致成型产品的光致发光(PL)效率降低。在此,报道了使用微反应器作为可控制的反应工具,直接在露天中可再现地合成高发光CdSe NCs。光谱研究表明,在硒和镉储液中同时使用OLA可以有利地促进两种前体之间的扩散,从而导致PL(26 nm)的半峰全宽(FWHM)狭窄。同时,已证明在源溶液中添加OLA有助于提高Cd单体的反应性。在这种情况下,尺寸分布的重点是在反应的早期阶段完成的。此外,如果前体中OLA的体积百分比(vol。%)超过了37.5%的阈值,则所得的CdSe NCs可以长期固定尺寸分布,最长可达300 s。所观察到的现象仅通过改变停留时间就促进了尺寸系列的单分散CdSe NCs的制备。在源溶液中OLA的体积百分比为37.5%的情况下,通过将停留时间从2 s改变为160 s,获得了78 nm的PL光谱调谐(从507到585),同时保持了PL的FMWH狭窄(26 –31 nm)和PL的高QY(35–55%)。

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