Krieg Franziska, Ochsenbein Stefan T, Yakunin Sergii, Ten Brinck Stephanie, Aellen Philipp, Süess Adrian, Clerc Baptiste, Guggisberg Dominic, Nazarenko Olga, Shynkarenko Yevhen, Kumar Sudhir, Shih Chih-Jen, Infante Ivan, Kovalenko Maksym V
Institute of Inorganic Chemistry, Department of Chemistry and Applied Bioscience, 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.
ACS Energy Lett. 2018 Mar 9;3(3):641-646. doi: 10.1021/acsenergylett.8b00035. Epub 2018 Feb 9.
Colloidal lead halide perovskite nanocrystals (NCs) have recently emerged as versatile photonic sources. Their processing and optoelectronic applications are hampered by the loss of colloidal stability and structural integrity due to the facile desorption of surface capping molecules during isolation and purification. To address this issue, herein, we propose a new ligand capping strategy utilizing common and inexpensive long-chain zwitterionic molecules such as 3-(,-dimethyloctadecylammonio)propanesulfonate, resulting in much improved chemical durability. In particular, this class of ligands allows for the isolation of clean NCs with high photoluminescence quantum yields (PL QYs) of above 90% after four rounds of precipitation/redispersion along with much higher overall reaction yields of uniform and colloidal dispersible NCs. Densely packed films of these NCs exhibit high PL QY values and effective charge transport. Consequently, they exhibit photoconductivity and low thresholds for amplified spontaneous emission of 2 μJ cm under femtosecond optical excitation and are suited for efficient light-emitting diodes.
胶体卤化铅钙钛矿纳米晶体(NCs)最近已成为多功能光子源。由于在分离和纯化过程中表面封端分子容易解吸,导致胶体稳定性和结构完整性丧失,这阻碍了它们的加工和光电应用。为了解决这个问题,在此我们提出一种新的配体封端策略,利用常见且廉价的长链两性离子分子,如3 -(N,N - 二甲基十八烷基铵)丙烷磺酸盐,从而大大提高了化学耐久性。特别是,这类配体允许在经过四轮沉淀/再分散后分离出具有高于90%的高光致发光量子产率(PL QYs)的纯净NCs,同时具有更高的均匀且可胶体分散的NCs的总反应产率。这些NCs的致密堆积薄膜表现出高PL QY值和有效的电荷传输。因此,它们表现出光电导性,并且在飞秒光激发下具有2 μJ cm的放大自发发射低阈值,适用于高效发光二极管。