Huang Shu-Han, Yang Sheng-Hsiung, Tsai Wen-Cheng, Hsu Hsu-Cheng
Institute of Lighting and Energy Photonics, College of Photonics, National Yang Ming Chiao Tung University, Tainan 711010, Taiwan.
Department of Photonics, National Cheng Kung University, Tainan 701401, Taiwan.
Nanomaterials (Basel). 2024 Jun 18;14(12):1049. doi: 10.3390/nano14121049.
This study aims to enhance the optical and thermal properties of cesium-based perovskite nanocrystals (NCs) through surface passivation with organic sulfonate (or sulfonic acid) ligands. Four different phenylated ligands, including sodium β-styrenesulfonate (SbSS), sodium benzenesulfonate (SBS), sodium -toluenesulfonate (SPTS), and 4-dodecylbenzenesulfonic acid (DBSA), were employed to modify blue-emitting CsPbBrCl perovskite NCs, resulting in improved size uniformity and surface functionalization. Transmission electron microscopy and X-ray photoelectron spectroscopy confirmed the successful anchoring of sulfonate or sulfonic acid ligands on the surface of perovskite NCs. Moreover, the photoluminescence quantum yield increased from 32% of the original perovskite NCs to 63% of the SPTS-modified ones due to effective surface passivation. Time-resolved photoluminescence decay measurements revealed extended PL lifetimes for ligand-modified NCs, indicative of reduced nonradiative recombination. Thermal stability studies demonstrated that the SPTS-modified NCs retained nearly 80% of the initial PL intensity when heated at 60 °C for 10 min, surpassing the performance of the original NCs. These findings emphasize the optical and thermal stability enhancement of cesium-based perovskite NCs through surface passivation with suitable sulfonate ligands.
本研究旨在通过用有机磺酸盐(或磺酸)配体进行表面钝化来增强铯基钙钛矿纳米晶体(NCs)的光学和热学性质。使用了四种不同的苯基化配体,包括β-苯乙烯磺酸钠(SbSS)、苯磺酸钠(SBS)、对甲苯磺酸钠(SPTS)和4-十二烷基苯磺酸(DBSA),来修饰发射蓝光的CsPbBrCl钙钛矿NCs,从而改善了尺寸均匀性和表面功能化。透射电子显微镜和X射线光电子能谱证实了磺酸盐或磺酸配体成功地锚定在钙钛矿NCs的表面。此外,由于有效的表面钝化,光致发光量子产率从原始钙钛矿NCs的32%提高到了SPTS修饰的NCs的63%。时间分辨光致发光衰减测量表明,配体修饰的NCs的PL寿命延长,这表明非辐射复合减少。热稳定性研究表明,SPTS修饰的NCs在60℃加热10分钟时仍保留近80%的初始PL强度,超过了原始NCs的性能。这些发现强调了通过用合适的磺酸盐配体进行表面钝化来增强铯基钙钛矿NCs的光学和热稳定性。