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单分散长链磺基甜菜碱封端的 CsPbBr 纳米晶体及其超荧光组装体。

Monodisperse Long-Chain Sulfobetaine-Capped CsPbBr Nanocrystals and Their Superfluorescent Assemblies.

作者信息

Krieg Franziska, Sercel Peter C, Burian Max, Andrusiv Hordii, Bodnarchuk Maryna I, Stöferle Thilo, Mahrt Rainer F, Naumenko Denys, Amenitsch Heinz, Rainò Gabriele, Kovalenko Maksym V

机构信息

Institute of Inorganic Chemistry, Department of Chemistry and Applied Biosciences, ETH Zürich, Vladimir Prelog Weg 1, CH-8093 Zürich, Switzerland.

Laboratory for Thin Films and Photovoltaics, Empa - Swiss Federal Laboratories for Materials Science and Technology, Überlandstrasse 129, CH-8600 Dübendorf, Switzerland.

出版信息

ACS Cent Sci. 2021 Jan 27;7(1):135-144. doi: 10.1021/acscentsci.0c01153. Epub 2020 Dec 29.

Abstract

Ligand-capped nanocrystals (NCs) of lead halide perovskites, foremost fully inorganic CsPbX NCs, are the latest generation of colloidal semiconductor quantum dots. They offer a set of compelling characteristics-large absorption cross section, as well as narrow, fast, and efficient photoluminescence with long exciton coherence times-rendering them attractive for applications in light-emitting devices and quantum optics. Monodisperse and shape-uniform, broadly size-tunable, scalable, and robust NC samples are paramount for unveiling their basic photophysics, as well as for putting them into use. Thus far, no synthesis method fulfilling all these requirements has been reported. For instance, long-chain zwitterionic ligands impart the most durable surface coating, but at the expense of reduced size uniformity of the as-synthesized colloid. In this work, we demonstrate that size-selective precipitation of CsPbBr NCs coated with a long-chain sulfobetaine ligand, namely, 3-(,-dimethyloctadecylammonio)-propanesulfonate, yields monodisperse and sizable fractions (>100 mg inorganic mass) with the mean NC size adjustable in the range between 3.5 and 16 nm and emission peak wavelength between 479 and 518 nm. We find that all NCs exhibit an oblate cuboidal shape with the aspect ratio of 1.2 × 1.2 × 1. We present a theoretical model (effective mass/) that accounts for the anisotropic NC shape and describes the size dependence of the first and second excitonic transition in absorption spectra and explains room-temperature exciton lifetimes. We also show that uniform zwitterion-capped NCs readily form long-range ordered superlattices upon solvent evaporation. In comparison to more conventional ligand systems (oleic acid and oleylamine), supercrystals of zwitterion-capped NCs exhibit larger domain sizes and lower mosaicity. Both kinds of supercrystals exhibit superfluorescence at cryogenic temperatures-accelerated collective emission arising from the coherent coupling of the emitting dipoles.

摘要

卤化铅钙钛矿的配体包覆纳米晶体(NCs),尤其是完全无机的CsPbX NCs,是新一代的胶体半导体量子点。它们具有一系列引人注目的特性——大吸收截面,以及窄、快且高效的光致发光,激子相干时间长——使其在发光器件和量子光学应用中具有吸引力。单分散、形状均匀、尺寸可广泛调节、可扩展且稳定的NC样品对于揭示其基本光物理性质以及将其投入使用至关重要。到目前为止,尚未报道满足所有这些要求的合成方法。例如,长链两性离子配体赋予最持久的表面涂层,但代价是合成胶体的尺寸均匀性降低。在这项工作中,我们证明,用长链磺基甜菜碱配体(即3-(N,N-二甲基十八烷基铵基)-丙烷磺酸盐)包覆的CsPbBr NCs的尺寸选择性沉淀,可产生单分散且尺寸可观的部分(>100 mg无机质量),平均NC尺寸可在3.5至16 nm范围内调节,发射峰波长在479至518 nm之间。我们发现所有NCs都呈现出扁平立方体形,长宽高比为1.2×1.2×1。我们提出了一个理论模型(有效质量/),该模型考虑了NC的各向异性形状,并描述了吸收光谱中第一和第二激子跃迁的尺寸依赖性,并解释了室温下的激子寿命。我们还表明,均匀的两性离子包覆NCs在溶剂蒸发后很容易形成长程有序超晶格。与更传统的配体体系(油酸和油胺)相比,两性离子包覆NCs的超晶体表现出更大的畴尺寸和更低的镶嵌性。两种超晶体在低温下都表现出超荧光——由发射偶极子的相干耦合引起的加速集体发射。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd62/7845019/bbec0ed5f707/oc0c01153_0001.jpg

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