Akkerman Quinten A, Abdelhady Ahmed L, Manna Liberato
Nanochemistry Department , Istituto Italiano di Tecnologia , Via Morego 30 , 16163 Genova , Italy.
Dipartimento di Chimica e Chimica Industriale , Università degli Studi di Genova , Via Dodecaneso 31 , 16146 Genova , Italy.
J Phys Chem Lett. 2018 May 3;9(9):2326-2337. doi: 10.1021/acs.jpclett.8b00572. Epub 2018 Apr 24.
Over the past decade, lead halide perovskites (LHPs) have emerged as new promising materials in the fields of photovoltaics and light emission due to their facile syntheses and exciting optical properties. The enthusiasm generated by LHPs has inspired research in perovskite-related materials, including the so-called "zero-dimensional cesium lead halides", which will be the focus of this Perspective. The structure of these materials is formed of disconnected lead halide octahedra that are stabilized by cesium ions. Their optical properties are dominated by optical transitions that are localized within the individual octahedra, hence the title "'zero-dimensional perovskites". Controversial results on their physical properties have recently been reported, and the true nature of their photoluminescence is still unclear. In this Perspective, we will take a close look at these materials, both as nanocrystals and as bulk crystals/thin films, discuss the contrasting opinions on their properties, propose potential applications, and provide an outlook on future experiments.
在过去十年中,卤化铅钙钛矿(LHPs)因其易于合成和令人兴奋的光学性质,在光伏和发光领域成为了有前景的新材料。LHPs引发的热情激发了对钙钛矿相关材料的研究,包括所谓的“零维铯铅卤化物”,这将是本综述的重点。这些材料的结构由通过铯离子稳定的孤立卤化铅八面体组成。它们的光学性质主要由局限于单个八面体内的光学跃迁决定,因此被称为“零维钙钛矿”。最近报道了关于它们物理性质的有争议的结果,其光致发光的真实本质仍不清楚。在本综述中,我们将仔细研究这些材料,包括纳米晶体以及块状晶体/薄膜,讨论关于它们性质的不同观点,提出潜在应用,并对未来实验进行展望。