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Ligand-flexible synthesis of strongly confined perovskite nanocrystals: a microwave synthetic approach

机译:配体柔性合成强受限钙钛矿纳米晶:一种微波合成方法

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摘要

Perovskite nanocrystals (PNCs) and their strongly confined versions have traditionally been synthesized via hot injection methods. However, there is a pressing need for a new synthesis method that offers more flexible surface chemistry, improved optical properties, and greater sample stability. Here we explore and exploit the recently introduced microwave (MW) synthesis method, focusing on temperature and coating ligands, including a polymer ligand for which the hot injection method is unsuitable. The optimized microwave synthetic protocols produce PNCs with better exciton definition, lower polydispersity, and stronger ligand attachment than their hot injection counterparts. A variety of characterization techniques were employed to compare the properties of PNCs produced by the hot injection versus microwave methods. Insight into the molecular basis for the improved PNC properties was provided by FTIR and several NMR experiments that revealed the nature of the attachment of different ligands and their interactions with the PNCs. The overall results demonstrate that MW synthesis is a promising alternative to the HI method, particularly if smaller PNCs with strong quantum confinement are desired.
机译:钙钛矿纳米晶体(pnc)和他们的强烈传统上被限制版本通过热注入方法合成。有一个迫切需要一个新的合成方法提供了更灵活的表面化学,改进的光学性质和大样本的稳定性。利用最近推出了微波(MW)合成方法,聚焦于温度和涂料配体,包括聚合物配体热注入的方法是不合适的。优化微波合成协议产生pnc更好的激子的定义,更低多分散性,强配位体附件热注入同行。描述的技术了产生的pnc比较属性热注入与微波的方法。为改善PNC的分子基础属性提供了通过红外光谱和核磁共振实验显示的性质不同配体及其附件pnc交互。证明MW合成是一种很有前途的替代嗨方法,特别是如果小pnc,并有很强的量子限制想要的。

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