Prashanthan Karunanantharajah, Levine Igal, Musiienko Artem, Gutierrez-Partida Emilio, Hempel Hannes, Lips Klaus, Unold Thomas, Stolterfoht Martin, Dittrich Thomas, MacQueen Rowan W
Department Spins in Energy Conversion and Quantum Information Science, Helmholtz-Zentrum Berlin für Materialien und Energie GmbH, 14109 Berlin, Germany.
Department of Physics, University of Jaffna, Jaffna, Sri Lanka.
iScience. 2023 Mar 9;26(4):106365. doi: 10.1016/j.isci.2023.106365. eCollection 2023 Apr 21.
Halide perovskite-based photon upconverters utilize perovskite thin films to sensitize triplet exciton formation in a small-molecule layer, driving triplet-triplet annihilation upconversion. Despite having excellent carrier mobility, these systems suffer from inefficient triplet formation at the perovskite/annihilator interface. We studied triplet formation in formamidinium-methylammonium lead iodide/rubrene bilayers using photoluminescence and surface photovoltage methods. By studying systems constructed on glass as well as hole-selective substrates, comprising self-assembled layers of the carbazole derivative 2PACz ([2-(9H-carbazol-9-yl)ethyl]phosphonic acid) on indium-doped tin oxide, we saw how changes in the carrier dynamics induced by the hole-selective substrate perturbed triplet formation at the perovskite/rubrene interface. We propose that an internal electric field, caused by hole transfer at the perovskite/rubrene interface, strongly affects triplet exciton formation, accelerating exciton-forming electron-hole encounters at the interface but also limiting the hole density in rubrene at high excitation densities. Controlling this field is a promising path to improving triplet formation in perovskite/annihilator upconverters.
基于卤化物钙钛矿的光子上转换器件利用钙钛矿薄膜在小分子层中敏化三重态激子的形成,驱动三重态-三重态湮灭上转换。尽管这些系统具有出色的载流子迁移率,但在钙钛矿/湮灭剂界面处三重态的形成效率较低。我们使用光致发光和表面光电压方法研究了甲脒-甲基铵碘化铅/红荧烯双层中的三重态形成。通过研究在玻璃以及空穴选择性衬底上构建的系统,该衬底由铟掺杂氧化锡上咔唑衍生物2PACz([2-(9H-咔唑-9-基)乙基]膦酸)的自组装层组成,我们观察到空穴选择性衬底引起的载流子动力学变化如何扰乱钙钛矿/红荧烯界面处的三重态形成。我们提出,钙钛矿/红荧烯界面处的空穴转移所产生的内电场强烈影响三重态激子的形成,加速界面处形成激子的电子-空穴相遇,但在高激发密度下也限制了红荧烯中的空穴密度。控制这个电场是改善钙钛矿/湮灭剂上转换器件中三重态形成的一条有前景的途径。