Self-Trapped Exciton versus Band-Edge Electron Transitions: Insights of the Factors Affecting the Optical Properties of Lead-Free Sn-Halide Perovskites

被引:1
|
作者
Gualdron-Reyes, Andres F. [1 ,2 ]
机构
[1] Univ Austral Chile, Inst Ciencias Quim, Fac Ciencias, Valdivia 5090000, Isla Teja, Chile
[2] Univ Jaume I UJI, Inst Adv Mat INAM, Ave Vicent Sos Baynat S-N, Castellon De La Plana 12071, Castello, Spain
来源
ADVANCED OPTICAL MATERIALS | 2025年 / 13卷 / 02期
关键词
band-to-band transitions; chemical composition; lead-free halide perovskites; self-trapped exciton; synthetic routes; CATIONS;
D O I
10.1002/adom.202402043
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Lead-free Sn-halide perovskites (Sn-HPs) are attractive photomaterials due to their lower toxicity, and some of them with higher stability against moisture and water, compared to their Pb-based analogous. Interestingly, Sn-HPs can exhibit two types of optical characteristics: the first scenario is known as band-edge electron transitions [or band-to-band (b-b) emission], where accumulated electrons in the conduction band recombine with holes in the valence band, providing a close separation between the absorption edge/photoluminescence (PL) peak (small Stokes shift). The second scenario is denominated as self-trapped exciton (STE), where intraband gap energy states are formed to trap photocarriers generated in the perovskite, producing a broadband PL and a large Stokes shift. These optical features have been suitable for developing prominent devices, but there is no consolidated explanation about the key factors influencing the emergence of b-b emission or STE in Sn-HPs, mainly the presence of these PL mechanisms in a particular perovskite system. This review highlights how the chemical composition, structural defects, and synthetic procedures are pivotal to producing Sn-HPs with specific b-b or STE features. This will allow the preparation of Sn-HPs with better quality/stability, and facile modulation of their PL properties, expanding their future applicability in LCD technologies. This review highlights the influence of the chemical composition, structural defects, and synthetic routes in the synthesis of Lead-free Sn-halide perovskites (Sn-HPs) with band-to-band (b-b) or/and self-trapped exciton (STE) properties, with potential application in light-emitting applications. The actual literature exposed in this contribution provides valuable approaches to control the above optical properties in Sn-HPs with better quality, and attractive for expanding their use in LCD technologies. image
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页数:13
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