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Reversible photo-induced trap formation in mixed-halide hybrid perovskites for photovoltaics

机译:光伏混合卤化物钙钛矿中可逆光致陷阱形成

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摘要

We report on reversible, light-induced transformations in (CH3NH3)Pb(BrxI1–x)3. Photoluminescence (PL) spectra of these perovskites develop a new, red-shifted peak at 1.68 eV that grows in intensity under constant, 1-sun illumination in less than a minute. This is accompanied by an increase in sub-bandgap absorption at ∼1.7 eV, indicating the formation of luminescent trap states. Light soaking causes a splitting of X-ray diffraction (XRD) peaks, suggesting segregation into two crystalline phases. Surprisingly, these photo-induced changes are fully reversible; the XRD patterns and the PL and absorption spectra revert to their initial states after the materials are left for a few minutes in the dark. We speculate that photoexcitation may cause halide segregation into iodide-rich minority and bromide-enriched majority domains, the former acting as a recombination center trap. This instability may limit achievable voltages from some mixed-halide perovskite solar cells and could have implications for the photostability of halide perovskites used in optoelectronics.
机译:我们报告了(CH3NH3)Pb(BrxI1-x)3中可逆的光诱导转变。这些钙钛矿的光致发光(PL)光谱在1.68 eV处产生了一个新的红移峰,该峰在持续的1-sun光照下不到一分钟的时间内强度就增加了。这伴随着约1.7 eV的子带隙吸收的增加,表明形成了发光陷阱态。浸透光会导致X射线衍射(XRD)峰分裂,表明分离为两个结晶相。令人惊讶的是,这些光诱导的变化是完全可逆的。将材料在黑暗中放置几分钟后,XRD图案以及PL和吸收光谱将恢复为初始状态。我们推测光激发可能会导致卤化物偏析成富含碘化物的少数区域和富含溴化物的多数区域,前者充当重组中心陷阱。这种不稳定性可能会限制某些混合卤化物钙钛矿太阳能电池可达到的电压,并且可能会影响光电子学中所使用的卤化钙钛矿的光稳定性。

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