Lei Haixin, Xu Yu, Zhang Yao, Feng Qingjie, Zhou Hongzhi, Tang Wei, Wang Jiaoyang, Li Linjun, Nan Guangjun, Xu Weigao, Zhu Haiming
State Key Laboratory of Modern Optical Instrument, Zhejiang Key Laboratory of Excited-State Energy Conversion and Energy Storage, Department of Chemistry, Zhejiang University, Hangzhou, Zhejiang 310027, China.
ZJU-Hangzhou Global Scientific and Technological Innovation Center, Hangzhou, Zhejiang 311200, China.
ACS Nano. 2024 Nov 12;18(45):31485-31494. doi: 10.1021/acsnano.4c12132. Epub 2024 Oct 31.
The emerging two-dimensional (2D) Dion-Jacobson (DJ) perovskites with bidentate ligands have attracted significant attention due to enhanced structural stability compared with conventional Ruddlesden-Popper (RP) perovskites with monodentate ligands linked by van der Waals interactions. However, how the pure chemical bond lattice interacts with excited state excitons and its impact on the exciton nature and dynamics in 2D DJ-perovskites, particularly in comparison to RP-perovskites, remains unexplored. Herein, by a combined spectroscopy study on excitonic and structural dynamics, we reveal a persistent exciton dressed by a weak polaronic effect in DJ-perovskite due to their rigid and harmonic lattice, in striking contrast to significantly screened exciton polaron observed in RP-perovskites. Despite the similar exciton binding energy (∼0.3 eV) in both = 1 DJ- and RP-perovskites with near-identical crystal structure, photoexcitation results in a slightly screened exciton with minimal structural relaxation and a retained binding energy of ∼0.29 eV in DJ-perovskites but strongly screened exciton polaron with a binding energy of ∼0.13 eV in RP-perovskites. Structural dynamics further highlight the rigid and harmonic lattice motion in DJ-perovskites, as opposed to the thermally activated anharmonic lattice in RP-perovskites, arising from their distinct bonding modes. Our study offers insights into modulating excited state properties in 2D perovskites, simulating the rational design of hybrid semiconductors with tailored properties and functionalities.
与通过范德华相互作用连接的单齿配体的传统Ruddlesden-Popper(RP)钙钛矿相比,具有双齿配体的新兴二维(2D)Dion-Jacobson(DJ)钙钛矿由于结构稳定性增强而备受关注。然而,纯化学键晶格如何与激发态激子相互作用及其对2D DJ钙钛矿中激子性质和动力学的影响,特别是与RP钙钛矿相比,仍未得到探索。在此,通过对激子和结构动力学的联合光谱研究,我们揭示了由于DJ钙钛矿刚性和谐波晶格,存在由弱极化子效应修饰的持久激子,这与在RP钙钛矿中观察到的显著屏蔽的激子极化子形成鲜明对比。尽管具有近乎相同晶体结构的n = 1 DJ和RP钙钛矿中的激子结合能相似(约0.3 eV),但光激发在DJ钙钛矿中产生了一个略有屏蔽的激子,结构弛豫最小,结合能保留约0.29 eV,而在RP钙钛矿中产生了结合能约0.13 eV的强屏蔽激子极化子。结构动力学进一步突出了DJ钙钛矿中刚性和谐波晶格运动,与RP钙钛矿中热激活的非谐波晶格相反,这源于它们不同的键合模式。我们的研究为调控2D钙钛矿中的激发态性质提供了见解,有助于合理设计具有定制性质和功能的混合半导体。