Department of Nanoengineering, University of California San Diego, La Jolla, CA, 92093, USA.
Center for Nanophotonics, AMOLF, Amsterdam, 1098 XG, The Netherlands.
Adv Mater. 2017 Nov;29(43). doi: 10.1002/adma.201703451. Epub 2017 Sep 29.
Optoelectronic devices based on hybrid perovskites have demonstrated outstanding performance within a few years of intense study. However, commercialization of these devices requires barriers to their development to be overcome, such as their chemical instability under operating conditions. To investigate this instability and its consequences, the electric field applied to single crystals of methylammonium lead bromide (CH NH PbBr ) is varied, and changes are mapped in both their elemental composition and photoluminescence. Synchrotron-based nanoprobe X-ray fluorescence (nano-XRF) with 250 nm resolution reveals quasi-reversible field-assisted halide migration, with corresponding changes in photoluminescence. It is observed that higher local bromide concentration is correlated to superior optoelectronic performance in CH NH PbBr . A lower limit on the electromigration rate is calculated from these experiments and the motion is interpreted as vacancy-mediated migration based on nudged elastic band density functional theory (DFT) simulations. The XRF mapping data provide direct evidence of field-assisted ionic migration in a model hybrid-perovskite thin single crystal, while the link with photoluminescence proves that the halide stoichiometry plays a key role in the optoelectronic properties of the perovskite.
基于杂化钙钛矿的光电设备在经过几年的深入研究后,其性能得到了显著提高。然而,这些设备若要实现商业化,就必须克服其发展面临的障碍,例如在工作条件下的化学不稳定性。为了研究这种不稳定性及其后果,我们改变了施加在甲基碘化铅(CHNH PbBr)单晶上的电场,并在元素组成和光致发光方面对其变化进行了映射。基于同步加速器的纳米探针 X 射线荧光(nano-XRF)具有 250nm 的分辨率,揭示了准可逆的场辅助卤化物迁移,以及相应的光致发光变化。研究发现,较高的局部溴化物浓度与 CHNH PbBr 中的卓越光电性能相关。从这些实验中计算出电迁移率的下限,并基于受激发射损耗(DFT)模拟解释其运动为空位介导的迁移。XRF 映射数据为模型杂化钙钛矿薄膜单晶中的场辅助离子迁移提供了直接证据,而与光致发光的联系证明卤化物化学计量在钙钛矿的光电性能中起着关键作用。