Zaccaria Francesco, Zhang Baowei, Goldoni Luca, Imran Muhammad, Zito Juliette, van Beek Bas, Lauciello Simone, De Trizio Luca, Manna Liberato, Infante Ivan
Dipartimento di Chimica e Chimica Industriale, Università degli Studi di Genova, Via Dodecaneso 31, 16146 Genova, Italy.
Department of Theoretical Chemistry, Faculty of Science, Vrije Universiteit Amsterdam, de Boelelaan 1083, 1081 HV Amsterdam, The Netherlands.
ACS Nano. 2022 Jan 25;16(1):1444-1455. doi: 10.1021/acsnano.1c09603. Epub 2022 Jan 10.
The interaction of lead bromide perovskite nanocrystals with charged ligands, such as salts, zwitterions, or acid-base pairs, has been extensively documented over the past few years. On the other hand, little is known about the reactivity of perovskite nanocrystals toward neutral ligands. To fill this gap, in this work we study the interaction of CsPbBr nanocrystals passivated with didodecyldimethylammonium bromide (DDABr) toward a series of exogenous acid/base ligands using a combined computational and experimental approach. Our analysis indicates that DDABr-capped nanocrystals are inert toward most ligands, except for carboxylic, phosphonic, and sulfonic acids. In agreement with the calculations, our experimental results indicate that the higher the acidity of the ligands employed in the treatment, the more etching is observed. In detail, dodecylbenzenesulfonic acid (p = -1.8) is found to etch the nanocrystals, causing their complete degradation. On the other hand, oleic and oleylphosphonic acids (p 9.9 and 2, respectively) interact with surface-bound DDA molecules, causing their displacement as DDABr in various amounts, which can be as high as 40% (achieved with oleylphosphonic acid). Despite the stripping of DDA ligands, the optical properties of the nanocrystals, as well as structure and morphology, remain substantially unaffected, empirically demonstrating the defect tolerance characterizing such materials. Our study provides not only a clear overview on the interaction between perovskite nanocrystals and neutral ligands but also presents an effective ligand stripping strategy.
在过去几年中,溴化铅钙钛矿纳米晶体与带电配体(如盐、两性离子或酸碱对)之间的相互作用已有大量文献记载。另一方面,关于钙钛矿纳米晶体与中性配体的反应性却知之甚少。为填补这一空白,在本工作中,我们采用计算与实验相结合的方法,研究了用十二烷基二甲基溴化铵(DDABr)钝化的CsPbBr纳米晶体与一系列外源性酸/碱配体之间的相互作用。我们的分析表明,除了羧酸、膦酸和磺酸外,DDABr包覆的纳米晶体对大多数配体是惰性的。与计算结果一致,我们的实验结果表明,处理中使用的配体酸度越高,观察到的蚀刻现象越明显。具体而言,发现十二烷基苯磺酸(pKa = -1.8)会蚀刻纳米晶体,导致其完全降解。另一方面,油酸和油基膦酸(pKa分别为9.9和2)与表面结合的DDA分子相互作用,导致不同量的DDA分子以DDABr的形式被取代,取代量高达40%(油基膦酸可达到此取代量)。尽管DDA配体被剥离,但纳米晶体的光学性质以及结构和形态基本上未受影响,从经验上证明了此类材料具有缺陷耐受性。我们的研究不仅清晰地概述了钙钛矿纳米晶体与中性配体之间的相互作用,还提出了一种有效的配体剥离策略。