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Phase-Stable CsPbI3 Nanocrystals: The Reaction Temperature Matters

机译:相位稳定的CSPBI3纳米晶体:反应温度致物质

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摘要

High temperature colloidal synthesis for obtaining thermal, colloidal and phase-stable CsPbI3 nanocrystals with near-unity quantum yield is reported. While standard perovskite synthesis reactions were carried out at 160 degrees C (below 200 degrees C), increase of another approximate to 100 degrees C enabled the alkylammonium ions to passivate the surface firmly and prevented the nanocrystals from phase transformation. This did not require any inert atmosphere storage, use of heteroatoms, specially designed ligands, or the ice cooling protocol. Either at high temperature in reaction flask or in the crude mixture or purified dispersed solution; these nanocrystals were observed stable and retained the original emission. Different spectroscopic analyses were carried out and details of the surface binding of alkyl ammonium ligands in place of surface Cs in the crystal lattice were investigated. As CsPbI3 is one of the most demanding optical materials, bringing stability by proper surface functionalization without use of secondary additives would indeed help in wide spreading of their applications.
机译:据报道了高温胶体合成,用于获得具有接近单位量子产率的热,胶体和相稳定的CSPBI3纳米晶体。虽然标准的钙钛矿合成反应在160℃(低于200℃)时,其另外的近似为100摄氏度的增加使烷基铵离子牢固地将表面钝化并防止纳米晶体与相变化。这不需要任何惰性气氛储存,使用杂原子,特殊设计的配体或冰冷却协议。在反应烧瓶中的高温或粗混合物或纯化的分散溶液中;观察到这些纳米晶体稳定并保留原始排放。研究了不同的光谱分析,并研究了烷基铵配体的表面结合的细节,代替晶格中的表面Cs。由于CSPBI3是最苛刻的光学材料之一,因此在不使用次级添加剂的情况下通过适当的表面官能化引起稳定性,确实有助于广泛传播其应用。

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