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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Probing the Stability and Band Gaps of Cs2AgInCl6 and Cs2AgSbCl6 Lead-Free Double Perovskite Nanocrystals
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Probing the Stability and Band Gaps of Cs2AgInCl6 and Cs2AgSbCl6 Lead-Free Double Perovskite Nanocrystals

机译:探测CS2AGINCL6和CS2AGSBCL6无铅双钙钛矿纳米晶体的稳定性和带空隙

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摘要

Lead toxicity has sparked interest into alternative halide nanomaterials with properties similar to CsPbX3 perovskites. A promising alternative suggested from bulk studies is the family of double perovskites of the form Cs2AgMX6. Here, we report the synthesis of colloidal Cs2AgInCl6 and Cs2AgSbCl6 nanocrystals via injection of acyl halides into a metal acetate solution under atmospheric conditions and relatively mild temperatures. We demonstrate the synthesis of single-crystalline cubic nanocrystals of ca. 10 nm side length and their morphological similarities to other double perovskite nanostructures in terms of their [200] facet termination and decoration with Ag-(0) smaller nanocrystallites. To compare the stabilities of the synthesized materials, we develop a titration assay based on the degradation of nanocrystals with amines as a proxy for degradation by humidity, which provides a quantifiable stability metric. This measurement shows that Cs2AgSbCl6 releases more than twice the decomposition energy compared to Cs2AgInCl6 or CsPbCl3 and degrades in the presence of approximately one molar equivalent of amine, whereas the other two materials require more than a 100-fold excess. Using facile chemical titration to quantitatively determine chemical stability provides an additional tool to aid in the basic understanding of what makes some of these materials more environmentally stable than others.
机译:铅毒性引发了偏移卤化物纳米材料的兴趣,其性质类似于CSPBX3 Perovskites。从批量研究中提出的一个有前途的替代方案是CS2AGMX6形式的双重钙化族家族。这里,我们通过将酰卤注入大气条件下的金属乙酸盐溶液和相对温和的温度下,报告胶体CS2AGINCL6和CS2AGSBCL6纳米晶体的合成。我们证明了CA的单晶立方体纳米晶体的合成。根据其[200]小颗粒终端和装饰,10nm侧长度及其与其他双钙钛矿纳米结构的形态相似性。为了比较合成材料的稳定性,我们基于用胺的纳米晶体的降解产生滴定测定作为通过湿度降解的代理,这提供了可量化的稳定性度量。该测量表明,与CS2AGINCL6或CSPBCL3相比,CS2AGSBCL6释放多于分解能量的两倍,并且在大约一个摩尔当量的胺存在下劣化,而另外两种材料需要超过100倍过量。使用容易化学滴定来定量地确定化学稳定性提供了一种额外的工具,以帮助基本了解这些材料比其他材料更环境稳定。

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