Kumar Praveen, Kumar Ankit, Ray Dipayan, Bag Monojit, Kar Prasenjit
Department of Chemistry, Indian Institute of Technology Roorkee, Roorkee, Uttarakhand, India.
Department of Physics, Indian Institute of Technology Roorkee, Roorkee, Uttarakhand, India.
Chemistry. 2025 Jun 27:e202501823. doi: 10.1002/chem.202501823.
Cesium lead bromide perovskite nanocrystals (NCs) show great potential for photoelectric properties. However, due to their poor stability and the insulating nature of passivating ligands, they suffer from practical applications. Herein, in an approach to passivate the NCs surface by introducing a ligand, Indole-2-carboxylic acid (ICA), we synthesized a mixed CsPbBr/CsPbBr NCs by a ligand-assisted reprecipitation approach. Incorporating the ICA ligand in place of long-chain insulating Oleic acid (OA) effectively reduced the loss of nonradiative recombination induced by surface trap states. Through all the performed compositional and structural characterization, the existence of CsPbBr/CsPbBr mixed NCs was confirmed. The obtained CsPbBr/CsPbBr mixed NCs show green emission at 518 nm and superior stability under ambient conditions compared to CsPbBr NCs. The photoluminescence (PL) of the CsPbBr/CsPbBr mixed NCs increased approximately three times, and the PL quantum yield (PLQY) increased from 75 ± 2% to 94 ± 2% as compared to CsPbBr NCs. To demonstrate the potential application of the material in optoelectronics, a photodetector based on mixed CsPbBr/CsPbBr NCs is fabricated, which exhibits the maximum responsivity of 1.133 mA/W at 9 mW/cm incident power density and faster rise and fall times of 0.31 ms and 1.19 ms, respectively. The specific detectivity of the device is 1.608 × 10⁹ Jones with an incident power of 9 mW/cm.
溴化铯铅钙钛矿纳米晶体(NCs)在光电性能方面显示出巨大潜力。然而,由于其稳定性差以及钝化配体的绝缘性质,它们在实际应用中受到困扰。在此,通过引入一种配体吲哚 - 2 - 羧酸(ICA)来钝化NCs表面,我们采用配体辅助再沉淀法合成了混合的CsPbBr/CsPbBr NCs。用ICA配体取代长链绝缘油酸(OA)有效地减少了由表面陷阱态引起的非辐射复合损失。通过所有进行的成分和结构表征,证实了CsPbBr/CsPbBr混合NCs的存在。所获得的CsPbBr/CsPbBr混合NCs在518 nm处呈现绿色发射,并且在环境条件下与CsPbBr NCs相比具有优异的稳定性。与CsPbBr NCs相比,CsPbBr/CsPbBr混合NCs的光致发光(PL)增加了约三倍,并且PL量子产率(PLQY)从75±2%提高到94±2%。为了证明该材料在光电子学中的潜在应用,制备了基于混合CsPbBr/CsPbBr NCs的光电探测器,在9 mW/cm的入射功率密度下,其最大响应度为1.133 mA/W,上升和下降时间分别更快,为0.31 ms和1.19 ms。该器件在9 mW/cm的入射功率下的比探测率为1.608×10⁹琼斯。