Chen Lung-Chien, Tien Ching-Ho, Tseng Zong-Liang, Dong Yu-Shen, Yang Shengyi
Department of Electro-Optical Engineering, National Taipei University of Technology, Taipei 10608, Taiwan.
Department of Electronic Engineering, Ming Chi University of Technology, New Taipei City 24301, Taiwan.
Materials (Basel). 2019 Mar 25;12(6):985. doi: 10.3390/ma12060985.
The poor stability of CsPbX₃ quantum dots (QDs-CsPbX₃) under wet conditions is still considered to be a key issue. In order to overcome this problem, this study presents a high molecular weight polymer matrix (polymethylmethacrylate, PMMA) incorporated into the QDs-CsPbBr₃ to improve its stability and maintain its excellent optical properties. In this study, the Cs₂CO₃, PbO, Tetrabutylammonium Bromide (TOAB) powder, oleic acid, and toluene solvent were uniformly mixed and purified to prepare high-quality QDs powders. Then, hexane was used as a dispersing agent for the QD powder to complete the perovskite QDs-CsPbBr₃ solution. Finally, a solution with different proportions of quantum dots CsPbBr₃ and PMMA was prepared and discussed. In the preparation of thin films, firstly, a thin film with the structure of glass/QD-CsPbBr₃/PMMA was fabricated in a glove box using a well-developed QDs-CsPbBr₃ solution by changing the ratio of CsPbBr₃:PMMA. The material analysis of QDs-CsPbBr₃ thin films was performed with photoluminescence (PL), transmittance, absorbance, and transmission electron microscopy (TEM). The structures and morphologies were further examined to study the effect of doped PMMA on perovskite QDs-CsPbBr₃.
CsPbX₃量子点(QDs-CsPbX₃)在潮湿条件下稳定性较差,这仍然被认为是一个关键问题。为了克服这一问题,本研究提出将高分子量聚合物基质(聚甲基丙烯酸甲酯,PMMA)掺入QDs-CsPbBr₃中,以提高其稳定性并保持其优异的光学性能。在本研究中,将碳酸铯、氧化铅、四丁基溴化铵(TOAB)粉末、油酸和甲苯溶剂均匀混合并纯化,以制备高质量的量子点粉末。然后,使用己烷作为量子点粉末的分散剂,制成钙钛矿量子点-CsPbBr₃溶液。最后,制备并讨论了具有不同比例量子点CsPbBr₃和PMMA的溶液。在薄膜制备过程中,首先,在手套箱中使用成熟的QDs-CsPbBr₃溶液,通过改变CsPbBr₃:PMMA的比例,制备出具有玻璃/QD-CsPbBr₃/PMMA结构的薄膜。利用光致发光(PL)、透光率、吸光度和透射电子显微镜(TEM)对QDs-CsPbBr₃薄膜进行材料分析。进一步研究其结构和形貌,以探究掺杂PMMA对钙钛矿量子点-CsPbBr₃的影响。