材料科学
光致发光
甲脒
激子
分析化学(期刊)
薄膜
结晶学
纳米技术
化学
物理
光电子学
钙钛矿(结构)
色谱法
量子力学
作者
Rhys M. Kennard,Clayton J. Dahlman,Emily E. Morgan,Juil Chung,Benjamin L. Cotts,Joseph R. A. Kincaid,Ryan A. DeCrescent,Kevin H. Stone,Shobhana Panuganti,Yahya Mohtashami,Lingling Mao,Richard D. Schaller,Alberto Salleo,Mercouri G. Kanatzidis,Jon A. Schuller,Ram Seshadri,Michael L. Chabinyc
标识
DOI:10.1002/adom.202200547
摘要
Abstract 2D hybrid perovskites are attractive for optoelectronic devices. In thin films, the color of optical emission and the texture of crystalline domains are often difficult to control. Here, a method for extinguishing or enhancing different emission features is demonstrated for the family of 2D Ruddlesden–Popper perovskites (EA 1− x FA x ) 4 Pb 3 Br 10 (EA = ethylammonium, FA = formamidinium). When grown from aqueous hydrobromic acid, crystals of (EA 1− x FA x ) 4 Pb 3 Br 10 retain all the emission features of their parent compound, (EA) 4 Pb 3 Br 10 . Surprisingly, when grown from dimethylformamide (DMF), an emission feature, likely self‐trapped exciton (STE), near 2.7 eV is missing. Extinction of this feature is correlated with DMF being incorporated between the 2D Pb‐Br sheets, forming (EA 1− x FA x ) 4 Pb 3 Br 10 ∙(DMF) y . Without FA, films grown from DMF form (EA) 4 Pb 3 Br 10 , retain little solvent, and have strong emission near 2.7 eV. Slowing the kinetics of film growth strengthens a different emission feature, likely a different type of STE, which is much broader and present in all compositions. Films of (EA 1− x FA x ) 4 Pb 3 Br 10 ∙(DMF) y have large, micron‐sized domains and homogeneous orientation of the semiconducting sheets, resulting in low electronic disorder near the absorption edge. The ability to selectively strengthen or extinguish different emission features in films of (EA 1− x FA x ) 4 Pb 3 Br 10 ∙(DMF) y reveals a pathway to tune the emission color in these compounds.
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