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用于卤化铅钙钛矿纳米晶体的紧密而动态结合的脂肪族胍盐配体

Tightly yet Dynamically Bound Aliphatic Guanidinium Ligands for Lead Halide Perovskite Nanocrystals.

作者信息

Berezovska Yuliia, Sabisch Sebastian, Bernasconi Caterina, Sahin Yesim, Bertolotti Federica, Guagliardi Antonietta, Bodnarchuk Maryna I, Dirin Dmitry N, Kovalenko Maksym V

机构信息

Institute of Inorganic Chemistry, Department of Chemistry and Applied Biosciences, ETH Zürich, CH-8093 Zürich, Switzerland.

Empa-Swiss Federal Laboratories for Materials Science and Technology, CH-8600 Dübendorf, Switzerland.

出版信息

J Am Chem Soc. 2025 Oct 1;147(39):35446-35455. doi: 10.1021/jacs.5c09354. Epub 2025 Sep 17.

Abstract

Lead halide perovskites (LHPs) have disrupted the field of visible-range emitting colloidal semiconductor nanocrystals (NCs) owing to their exceptional emissivity as classical and quantum light sources. Their appeal is countered by the stability challenges arising from inherent lattice softness and labile surface ligand bonding. Recent ligand design efforts have drastically improved the structural integrity of LHP NCs by pursuing strongly and statically bound ligands, as found with zwitterionic headgroups. Here, we venture into a new class of cationic ligands featuring guanidinium headgroups, which combine the compactness of primary ammoniums with the deprotonation resistance of quaternary ammoniums. We reasoned that strong yet dynamic ligand binding offers distinct benefits. A library of aliphatic guanidinium molecules was synthesized and surveyed as capping ligands for CsPbBr, FAPbBr, and CsPbI NCs, enabling up to 95% photoluminescence quantum yields for bromide compositions. We then compare binding behavior of guanidinium ligands with those of other widely used ligands. Zwitterionic ligands phosphocholines and phosphoethanolamines bind more strongly than sulfobetaines and quaternary ammonium ligands, yet all these headgroups impart relatively static binding with exchange rates below 5 s. Primary ammonium ligands are champions in dynamicity but lag behind in ligand-coverage retention and, hence, long-term stability. Guanidinium ligands strike a favorable balance: they match the binding dynamics of primary ammonium ligands while significantly enhancing binding strength, enabling rigorous purification and compatibility with relatively polar solvents such as tetrahydrofuran. We then showcase the benefits of dynamically bound ligands in photocatalytic C-C coupling reactions.

摘要

卤化铅钙钛矿(LHPs)凭借其作为经典光源和量子光源的卓越发射率,颠覆了可见光谱范围内发光的胶体半导体纳米晶体(NCs)领域。然而,其内在的晶格柔软性和不稳定的表面配体键合所带来的稳定性挑战,抵消了它们的吸引力。最近的配体设计工作通过采用两性离子头基等强静态结合配体,极大地改善了LHP NCs的结构完整性。在此,我们探索了一类以胍盐头基为特征的新型阳离子配体,它结合了伯铵的紧密性和季铵的抗去质子化能力。我们推断,强而动态的配体结合具有明显的优势。合成并研究了一系列脂肪族胍盐分子作为CsPbBr、FAPbBr和CsPbI NCs的封端配体,对于溴化物组成,其光致发光量子产率可达95%。然后,我们比较了胍盐配体与其他广泛使用的配体的结合行为。两性离子配体磷酸胆碱和磷酸乙醇胺的结合比磺基甜菜碱和季铵配体更强,但所有这些头基都赋予相对静态的结合,交换速率低于5 s⁻¹。伯铵配体在动态性方面表现出色,但在配体覆盖保留率以及因此的长期稳定性方面落后。胍盐配体取得了良好的平衡:它们与伯铵配体的结合动力学相匹配,同时显著增强了结合强度,实现了严格的纯化以及与相对极性溶剂(如四氢呋喃)的兼容性。然后,我们展示了动态结合配体在光催化C-C偶联反应中的优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cdfd/12498395/e0a2221e78ce/ja5c09354_0001.jpg

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