Hefei National Research Center for Physical Sciences at the Microscale, University of Science and Technology of China, Hefei, Anhui 230026, China.
Hefei National Laboratory, University of Science and Technology of China, Hefei, Anhui 230088, China.
J Chem Phys. 2023 Apr 28;158(16). doi: 10.1063/5.0145925.
Organic-cation engineering has recently proven effective in flexibly regulating two-dimensional hybrid organic-inorganic perovskites (2D HOIPs) to achieve a diversity of newly emerging applications. There have been many mechanistic studies based on the structural tunability of organic cations; nevertheless, those with an emphasis on the effect solely caused by the organic cations remain lacking. To this end, here we deliberately design a set of 2D HOIPs in which the inorganic layers are kept nearly intact upon cation modification, i.e., the precursor phenethylammonium lead iodide and its four derivatives with the phenyl group's para-position H being replaced by CH3, F, Cl, and Br. By means of femtosecond time-resolved transient absorption spectroscopy and temperature-dependent/time-resolved photoluminescence spectroscopy, we interrogate the subtle impact of cation modification on phonon dynamics, coherent phonon modes, phonon-dressed exciton dynamics, and excitonic emissions. A concerted trend for phonon lifetimes and exciton relaxation lifetimes regulated by cation modification is revealed, evidencing the existence of strong exciton-phonon coupling in this 2D HOIP system. The observed mass effect can be ascribed to the change in moment of inertia of organic cations. In addition, we observe an interesting interplay of exciton kinetics pertinent to population transfers between two emissive states, likely linked to the subtle variation in crystal symmetry induced by cation modification. The mechanistic insights gained from this work would be of value for the 2D HOIPs-based applications.
有机阳离子工程最近被证明在灵活调节二维混合有机-无机钙钛矿(2D HOIPs)方面非常有效,可实现多种新兴应用。已经有许多基于有机阳离子结构可调性的机理研究;然而,那些仅强调有机阳离子所引起的影响的研究仍然缺乏。为此,我们在这里故意设计了一组 2D HOIPs,其中在阳离子修饰时无机层几乎保持完整,即前驱体苯乙基碘化铵及其四个衍生物,其中苯基的对位 H 被 CH3、F、Cl 和 Br 取代。通过飞秒时间分辨瞬态吸收光谱和温度相关/时间分辨光致发光光谱,我们研究了阳离子修饰对声子动力学、相干声子模式、声子修饰激子动力学和激子发射的微妙影响。揭示了阳离子修饰调节声子寿命和激子弛豫寿命的协同趋势,证明了该 2D HOIP 体系中存在强烈的激子-声子耦合。观察到的质量效应可归因于有机阳离子转动惯量的变化。此外,我们观察到与两个发射态之间的种群转移有关的激子动力学的有趣相互作用,这可能与阳离子修饰引起的晶体对称性的细微变化有关。这项工作获得的机理见解对于基于 2D HOIP 的应用将具有重要价值。