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强受限 CsPbBr 量子点作为量子发射器和菱形超晶格的构建块。

Strongly Confined CsPbBr Quantum Dots as Quantum Emitters and Building Blocks for Rhombic Superlattices.

机构信息

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

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

出版信息

ACS Nano. 2023 Feb 14;17(3):2089-2100. doi: 10.1021/acsnano.2c07677. Epub 2023 Jan 31.

Abstract

The success of the colloidal semiconductor quantum dots (QDs) field is rooted in the precise synthetic control of QD size, shape, and composition, enabling electronically well-defined functional nanomaterials that foster fundamental science and motivate diverse fields of applications. While the exploitation of the strong confinement regime has been driving commercial and scientific interest in InP or CdSe QDs, such a regime has still not been thoroughly explored and exploited for lead-halide perovskite QDs, mainly due to a so far insufficient chemical stability and size monodispersity of perovskite QDs smaller than about 7 nm. Here, we demonstrate chemically stable strongly confined 5 nm CsPbBr colloidal QDs via a postsynthetic treatment employing didodecyldimethylammonium bromide ligands. The achieved high size monodispersity (7.5% ± 2.0%) and shape-uniformity enables the self-assembly of QD superlattices with exceptional long-range order, uniform thickness, an unusual rhombic packing with an obtuse angle of 104°, and narrow-band cyan emission. The enhanced chemical stability indicates the promise of strongly confined perovskite QDs for solution-processed single-photon sources, with single QDs showcasing a high single-photon purity of 73% and minimal blinking (78% "on" fraction), both at room temperature.

摘要

胶体半导体量子点 (QD) 领域的成功源于对 QD 尺寸、形状和组成的精确合成控制,从而实现了电子定义明确的功能纳米材料,推动了基础科学的发展,并激发了各个领域的应用。虽然强限域态的开发激发了人们对 InP 或 CdSe QD 的商业和科学兴趣,但由于卤铅钙钛矿 QD 的化学稳定性和尺寸单分散性迄今为止还不够,这种限域态仍未得到彻底探索和开发,其尺寸小于约 7nm。在这里,我们通过采用双十二烷基二甲基溴化铵配体的后合成处理,展示了具有化学稳定性的强限域的 5nm CsPbBr 胶体 QD。实现的高尺寸单分散性(7.5%±2.0%)和形状均一性使 QD 超晶格能够自组装,具有出色的长程有序性、均匀的厚度、不寻常的斜方晶系排列和钝角为 104°,以及窄带青色发射。增强的化学稳定性表明强限域钙钛矿 QD 在溶液处理的单光子源中有应用前景,单个 QD 在室温下展示出 73%的高光子纯度和最小的闪烁(78%“开”部分)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11d7/9933619/d4cfaa23c2fa/nn2c07677_0001.jpg

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