Fully Inorganic Ruddlesden-Popper Double CI-I and Triple CI-Br-I Lead Halide Perovskite Nanocrystals

被引:73
作者
Akkerman, Quinten A. [1 ,2 ]
Bladt, Eva [3 ]
Petralanda, Urko [1 ]
Dang, Zhiya [1 ]
Sartori, Emanuela [2 ]
Baranov, Dmitry [1 ]
Abdelhady, Ahmed L. [1 ]
Infante, Ivan [1 ,4 ]
Bals, Sara [3 ]
Manna, Liberato [1 ]
机构
[1] Ist Italiano Tecnol, Nanochem Dept, Via Morego 30, I-16163 Genoa, Italy
[2] Univ Genoa, Dipartimento Chim & Chim Ind, Via Dodecaneso 31, I-16146 Genoa, Italy
[3] Univ Antwerp, Dept Phys, EMAT, Groenenborgerlaan 171, B-2020 Antwerp, Belgium
[4] Vrije Univ Amsterdam, Fac Sci, Dept Theoret Chem, Boelelaan 1083, NL-1081 HV Amsterdam, Netherlands
关键词
ANION-EXCHANGE; CL; NANOPLATELETS; CSPBX3; PHASE; CHALLENGES; STABILITY; EMISSION; CHLORIDE; METAL;
D O I
10.1021/acs.chemmater.9b00489
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The vast majority of lead halide perovskite (LHP) nanocrystals (NCs) are currently based on either a single halide composition (CsPbCl3, CsPbBr3, and CsPbI3) or an alloyed mixture of bromide with either Cl- or I- [i.e., CsPb(Br:Cl)(3) or CsPb(Br:I)(3)]. In this work, we present the synthesis as well as a detailed optical and structural study of two halide alloying cases that have not previously been reported for LHP NCs: Cs2PbI2Cl2 NCs and triple halide CsPb(Cl:Br:I)(3) NCs. In the case of Cs2PbI2Cl2, we observe for the first time NCs with a fully inorganic Ruddlesden-Popper phase (RPP) crystal structure. Unlike the well-explored organic-inorganic RPP, here, the RPP formation is triggered by the size difference between the halide ions. These NCs exhibit a strong excitonic absorption, albeit with a weak photoluminescence quantum yield (PLQY). In the case of the triple halide CsPb(Cl:Br:I)(3) composition, the NCs comprise a CsPbBr2Cl perovskite crystal lattice with only a small amount of incorporated iodide, which segregates at RPP planes' interfaces within the CsPb(Cl:Br:I)(3) NCs. Supported by density functional theory calculations and postsynthetic surface treatments to enhance the PLQY, we show that the combination of iodide segregation and defective RPP interfaces are most likely linked to the strong PL quenching observed in these nanostructures. In summary, this work demonstrates the limits of halide alloying in LHP NCs because a mixture that contains halide ions of very different sizes leads to the formation of defective RPP interfaces and a severe quenching of LHP NC's optical properties.
引用
收藏
页码:2182 / 2190
页数:9
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