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Rapid synthesis of quantum-confined CsPbBr3 perovskite nanowires using a microfluidic reactor

机译:快速合成量子局限CsPbBr3钙钛矿使用微流体反应堆纳米线

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摘要

Microfluidics has been considered as an effective platform in the mechanism study and large-scale manufacturing of nanomaterials. In this work, we report the facile synthesis of quantum-confined CsPbBr3 nanowires (NWs) by using a continuous-flow microfluidic reactor. The optimized reaction temperature is around 50 degrees C, and one "synthesis run" by microfluidics requires only ten minutes. This study reveals that the formation of CsPbBr3 NWs takes place by a hybrid growth mechanism of seed-mediated growth and oriented attachment growth. This microfluidic approach benefits the alignment of the short quantum-confined NWs and promotes their oriented attachment to form long NWs, while conventional flask synthesis results in large and irregular nanorods under the same reaction conditions. This work not only provides a new synthetic path for the preparation of CsPbX3 NWs but also sheds some light on the fundamental study of CsPbX3 NWs.
机译:微流体被认为是有效的平台的机制研究和大规模的生产的纳米材料。报告的简单合成量子局限CsPbBr3纳米线(NWs)通过使用连续流微流体反应堆。优化反应温度大约是50度,一个“合成”微流体只需要十分钟。研究显示,CsPbBr3交响乐团的形成发生的混合生长机制面向seed-mediated增长和附件增长。对齐的短量子局限NWs和促进面向他们的依恋形成长拥有核武器的国家,而传统的瓶合成的结果在大而不规则的纳米棒一样反应条件。一个新的合成路径的准备CsPbX3 NWs还阐明了CsPbX3所在地的基本研究。

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