Lee Donguk, Kim MinHye, Woo Ho-Young, Chae Jiyeon, Lee Dawon, Jeon Sanghyun, Oh Soong Ju, Paik Taejong
Department of Integrative Engineering, Chung-Ang University Seoul 06974 Republic of Korea
Department of Materials Science and Engineering, Korea University Seoul 02841 Republic of Korea
RSC Adv. 2020 Feb 17;10(12):7126-7133. doi: 10.1039/c9ra10106c. eCollection 2020 Feb 13.
This study represents the heating-up synthesis of lead-free cesium bismuth bromide perovskite nanocrystals (NCs). CsBr and BiBr precursors are used to synthesize uniform and phase-pure cesium bismuth bromide NCs, and the reaction is performed an injection-free, heating-up method in the presence of a solvent mixture with a high boiling point. The size and composition of cesium bismuth bromide NCs are readily controlled by changing the reaction time, temperature, and amount of surfactant added to the reaction mixture. Upon heating, sequential phase evolution occurs, resulting in the formation of kinetically stable BiOBr in the early reaction stages, which transformed into the thermodynamically stable CsBiBr and CsBiBr with an increase in either the reaction time or the reaction temperature. Furthermore, the absorption and photoluminescence properties of CsBiBr and CsBiBr NCs are characterized to investigate their composition-dependent optical properties. This work provides the potential to synthesize various types of lead-free perovskite NCs by tailoring the size and compositions.
本研究展示了无铅溴化铯铋钙钛矿纳米晶体(NCs)的升温合成。使用溴化铯(CsBr)和溴化铋(BiBr)前驱体来合成均匀且相纯的溴化铯铋NCs,该反应在高沸点混合溶剂存在下采用无注入升温法进行。通过改变反应时间、温度以及添加到反应混合物中的表面活性剂的量,可以轻松控制溴化铯铋NCs的尺寸和组成。加热时,会发生连续的相演变,在反应早期形成动力学稳定的溴氧化铋(BiOBr),随着反应时间或反应温度的增加,其转变为热力学稳定的CsBiBr₃和Cs₃Bi₂Br₉。此外,对CsBiBr₃和Cs₃Bi₂Br₉ NCs的吸收和光致发光特性进行了表征,以研究其与组成相关的光学性质。这项工作为通过调整尺寸和组成来合成各种类型的无铅钙钛矿NCs提供了可能性。