• Chinese Optics Letters
  • Vol. 20, Issue 10, 100010 (2022)
Fengke Sun, Boning Wu*, and Shengye Jin**
Author Affiliations
  • Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, China
  • show less
    DOI: 10.3788/COL202220.100010 Cite this Article Set citation alerts
    Fengke Sun, Boning Wu, Shengye Jin. Large bandgap oscillations in two-dimensional Dion–Jacobson phase perovskites caused by coherent longitudinal acoustic phonons [Invited][J]. Chinese Optics Letters, 2022, 20(10): 100010 Copy Citation Text show less
    References

    [1] D. Li, D. Zhang, K. S. Lim, Y. Hu, Y. Rong, A. Mei, N. G. Park, H. Han. A review on scaling up perovskite solar cells. Adv. Funct. Mater., 31, 2008621(2020).

    [2] R. Azmi, E. Ugur, A. Seitkhan, F. Aljamaan, A. S. Subbiah, J. Liu, G. T. Harrison, M. I. Nugraha, M. K. Eswaran, M. J. S. Babics. Damp heat–stable perovskite solar cells with tailored-dimensionality 2D/3D heterojunctions. Science, 376, 73(2022).

    [3] H. Zhu, Y. Ren, L. Pan, O. Ouellette, F. T. Eickemeyer, Y. Wu, X. Li, S. Wang, H. Liu, X. Dong, S. M. Zakeeruddin, Y. Liu, A. Hagfeldt, M. Gratzel. Synergistic effect of fluorinated passivator and hole transport dopant enables stable perovskite solar cells with an efficiency near 24. J. Am. Chem. Soc., 143, 3231(2021).

    [4] Y. Yin, W. Tian, H. Luo, Y. Gao, T. Zhao, C. Zhao, J. Leng, Q. Sun, J. Tang, P. Wang, Q. Li, X. Lü, J. Bian, S. Jin. Excellent carrier transport property of hybrid perovskites sustained under high pressures. ACS Energy Lett., 7, 154(2021).

    [5] L. N. Quan, M. Yuan, R. Comin, O. Voznyy, E. M. Beauregard, S. Hoogland, A. Buin, A. R. Kirmani, K. Zhao, A. Amassian, D. H. Kim, E. H. Sargent. Ligand-stabilized reduced-dimensionality perovskites. J. Am. Chem. Soc., 138, 2649(2016).

    [6] Q. Sun, C. Zhao, Z. Yin, S. Wang, J. Leng, W. Tian, S. Jin. Ultrafast and high-yield polaronic exciton dissociation in two-dimensional perovskites. J. Am. Chem. Soc., 143, 19128(2021).

    [7] W. Tao, Y. Zhang, H. Zhu. Dynamic exciton polaron in two-dimensional lead halide perovskites and implications for optoelectronic applications. Acc. Chem. Res., 55, 345(2022).

    [8] G. Wu, R. Liang, M. Ge, G. Sun, Y. Zhang, G. Xing. Surface passivation using 2D perovskites toward efficient and stable perovskite solar cells. Adv. Mater., 34, 2105635(2022).

    [9] X. Zhao, T. Liu, Y. L. Loo. Advancing 2D perovskites for efficient and stable solar cells: challenges and opportunities. Adv. Mater., 34, 2105849(2022).

    [10] J. Tang, W. Tian, C. Zhao, Q. Sun, C. Zhang, H. Cheng, Y. Shi, S. Jin. Imaging the moisture-induced degradation process of 2D organolead halide perovskites. ACS Omega, 7, 10365(2022).

    [11] C. Katan, N. Mercier, J. Even. Quantum and dielectric confinement effects in lower-dimensional hybrid perovskite semiconductors. Chem. Rev., 119, 3140(2019).

    [12] C. M. Mauck, W. A. Tisdale. Excitons in 2D organic–inorganic halide perovskites. Trends Chem., 1, 380(2019).

    [13] J. C. Blancon, J. Even, C. C. Stoumpos, M. G. Kanatzidis, A. D. Mohite. Semiconductor physics of organic-inorganic 2D halide perovskites. Nat. Nanotechnol., 15, 969(2020).

    [14] L. Mao, W. Ke, L. Pedesseau, Y. Wu, C. Katan, J. Even, M. R. Wasielewski, C. C. Stoumpos, M. G. Kanatzidis. Hybrid Dion-Jacobson 2D lead iodide perovskites. J. Am. Chem. Soc., 140, 3775(2018).

    [15] P. Fu, Y. Liu, S. Yu, H. Yin, B. Yang, S. Ahmad, X. Guo, C. Li. Dion-Jacobson and Ruddlesden-Popper double-phase 2D perovskites for solar cells. Nano Energy, 88, 106249(2021).

    [16] J. Gong, M. Hao, Y. Zhang, M. Liu, Y. Zhou. Layered 2D halide perovskites beyond the Ruddlesden–Popper phase: tailored interlayer chemistries for high-performance solar cells. Angew. Chem. Int. Ed., 61, e202112022(2022).

    [17] P. Guo, Y. Xia, J. Gong, D. H. Cao, X. Li, X. Li, Q. Zhang, C. C. Stoumpos, M. S. Kirschner, H. Wen, V. B. Prakapenka, J. B. Ketterson, A. B. F. Martinson, T. Xu, M. G. Kanatzidis, M. K. Y. Chan, R. D. Schaller. Direct observation of band gap oscillations induced by optical phonons in hybrid lead iodide perovskites. Adv. Funct. Mater., 30, 1907982(2020).

    [18] H. Kim, J. Hunger, E. Canovas, M. Karakus, Z. Mics, M. Grechko, D. Turchinovich, S. H. Parekh, M. Bonn. Direct observation of mode-specific phonon-band gap coupling in methylammonium lead halide perovskites. Nat. Commun., 8, 687(2017).

    [19] Y. Li, S. He, X. Luo, X. Lu, K. Wu. Strong spin-selective optical Stark effect in lead halide perovskite quantum dots. J. Phys. Chem. Lett., 11, 3594(2020).

    [20] Y. Yang, M. Yang, K. Zhu, J. C. Johnson, J. J. Berry, J. van de Lagemaat, M. C. Beard. Large polarization-dependent exciton optical Stark effect in lead iodide perovskites. Nat. Commun., 7, 12613(2016).

    [21] D. Giovanni, W. K. Chong, H. A. Dewi, K. Thirumal, I. Neogi, R. Ramesh, S. Mhaisalkar, N. Mathews, T. C. Sum. Tunable room-temperature spin-selective optical Stark effect in solution-processed layered halide perovskites. Sci. Adv., 2, e1600477(2016).

    [22] W. Zhao, Q. Dong, J. Zhang, S. Wang, M. Chen, C. Zhao, M. Hu, S. Jin, N. P. Padture, Y. Shi. Asymmetric alkyl diamine based Dion–Jacobson low-dimensional perovskite solar cells with efficiency exceeding 15%. J. Mater. Chem. A, 8, 9919(2020).

    [23] J. Liu, J. Leng, K. Wu, J. Zhang, S. Jin. Observation of internal photoinduced electron and hole separation in hybrid two-dimensional perovskite films. J. Am. Chem. Soc., 139, 1432(2017).

    [24] S. H. Autler, C. H. Townes. Stark effect in rapidly varying fields. Phys. Rev., 100, 703(1955).

    [25] C. Thomsen, J. Strait, Z. Vardeny, H. J. Maris, J. Tauc, J. J. Hauser. Coherent phonon generation and detection by picosecond light pulses. Phys. Rev. Lett., 53, 989(1984).

    [26] P. Ruello, V. E. Gusev. Physical mechanisms of coherent acoustic phonons generation by ultrafast laser action. Ultrasonics, 56, 21(2015).

    [27] C. Thomsen, H. T. Grahn, H. J. Maris, J. Tauc. Surface generation and detection of phonons by picosecond light pulses. Phys. Rev. B, 34, 4129(1986).

    [28] D. Liu, D. Luo, A. N. Iqbal, K. W. P. Orr, T. A. S. Doherty, Z. H. Lu, S. D. Stranks, W. Zhang. Strain analysis and engineering in halide perovskite photovoltaics. Nat. Mater., 20, 1337(2021).

    [29] E. T. Swartz, R. O. Pohl. Thermal boundary resistance. Rev. Mod. Phys., 61, 605(1989).

    [30] Y. Yang, M. Yang, D. T. Moore, Y. Yan, E. M. Miller, K. Zhu, M. C. Beard. Top and bottom surfaces limit carrier lifetime in lead iodide perovskite films. Nat. Energy, 2, 16207(2017).

    [31] J. K. Miller, J. Qi, Y. Xu, Y. J. Cho, X. Liu, J. K. Furdyna, I. Perakis, T. V. Shahbazyan, N. Tolk. Near-band gap wavelength dependence of long-lived traveling coherent longitudinal acoustic phonons in GaSb-GaAs heterostructures. Phys. Rev. B, 74, 113313(2006).

    [32] P. Guo, C. C. Stoumpos, L. Mao, S. Sadasivam, J. B. Ketterson, P. Darancet, M. G. Kanatzidis, R. D. Schaller. Cross-plane coherent acoustic phonons in two-dimensional organic-inorganic hybrid perovskites. Nat. Commun., 9, 2019(2018).

    Data from CrossRef

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    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Zixin Wang, Ningning Dong, Yu Mao, Chenduan Chen, Xin Chen, Chang Xu, Zhouyuan Yan, Jun Wang.

    [1] Zixin Wang, Ningning Dong, Yu Mao, Chenduan Chen, Xin Chen, Chang Xu, Zhouyuan Yan, Jun Wang.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Zixin Wang, Ningning Dong, Yu Mao, Chenduan Chen, Xin Chen, Chang Xu, Zhouyuan Yan, Jun Wang.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Zixin Wang, Ningning Dong, Yu Mao, Chenduan Chen, Xin Chen, Chang Xu, Zhouyuan Yan, Jun Wang.

    [1] Zixin Wang, Ningning Dong, Yu Mao, Chenduan Chen, Xin Chen, Chang Xu, Zhouyuan Yan, Jun Wang.

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    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Zixin Wang, Ningning Dong, Yu Mao, Chenduan Chen, Xin Chen, Chang Xu, Zhouyuan Yan, Jun Wang.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Zixin Wang, Ningning Dong, Yu Mao, Chenduan Chen, Xin Chen, Chang Xu, Zhouyuan Yan, Jun Wang.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Zixin Wang, Ningning Dong, Yu Mao, Chenduan Chen, Xin Chen, Chang Xu, Zhouyuan Yan, Jun Wang.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Zixin Wang, Ningning Dong, Yu Mao, Chenduan Chen, Xin Chen, Chang Xu, Zhouyuan Yan, Jun Wang.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Zixin Wang, Ningning Dong, Yu Mao, Chenduan Chen, Xin Chen, Chang Xu, Zhouyuan Yan, Jun Wang.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Zixin Wang, Ningning Dong, Yu Mao, Chenduan Chen, Xin Chen, Chang Xu, Zhouyuan Yan, Jun Wang.

    [1] Zixin Wang, Ningning Dong, Yu Mao, Chenduan Chen, Xin Chen, Chang Xu, Zhouyuan Yan, Jun Wang.

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    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Zixin Wang, Ningning Dong, Yu Mao, Chenduan Chen, Xin Chen, Chang Xu, Zhouyuan Yan, Jun Wang.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Zixin Wang, Ningning Dong, Yu Mao, Chenduan Chen, Xin Chen, Chang Xu, Zhouyuan Yan, Jun Wang.

    [1] Zixin Wang, Ningning Dong, Yu Mao, Chenduan Chen, Xin Chen, Chang Xu, Zhouyuan Yan, Jun Wang.

    [1] Zixin Wang, Ningning Dong, Yu Mao, Chenduan Chen, Xin Chen, Chang Xu, Zhouyuan Yan, Jun Wang.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

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    [1] Zixin Wang, Ningning Dong, Yu Mao, Chenduan Chen, Xin Chen, Chang Xu, Zhouyuan Yan, Jun Wang.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

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    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

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    [1] Zixin Wang, Ningning Dong, Yu Mao, Chenduan Chen, Xin Chen, Chang Xu, Zhouyuan Yan, Jun Wang.

    [1] Zixin Wang, Ningning Dong, Yu Mao, Chenduan Chen, Xin Chen, Chang Xu, Zhouyuan Yan, Jun Wang.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Zixin Wang, Ningning Dong, Yu Mao, Chenduan Chen, Xin Chen, Chang Xu, Zhouyuan Yan, Jun Wang.

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    [1] Zixin Wang, Ningning Dong, Yu Mao, Chenduan Chen, Xin Chen, Chang Xu, Zhouyuan Yan, Jun Wang.

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    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

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    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Zixin Wang, Ningning Dong, Yu Mao, Chenduan Chen, Xin Chen, Chang Xu, Zhouyuan Yan, Jun Wang.

    [1] Zixin Wang, Ningning Dong, Yu Mao, Chenduan Chen, Xin Chen, Chang Xu, Zhouyuan Yan, Jun Wang.

    [1] Zixin Wang, Ningning Dong, Yu Mao, Chenduan Chen, Xin Chen, Chang Xu, Zhouyuan Yan, Jun Wang.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [1] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [2] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [2] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [2] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

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    [2] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [2] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [2] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [2] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [2] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [2] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [2] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [2] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [2] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [2] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [2] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [2] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [2] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [2] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [2] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [2] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [2] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [2] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

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    [2] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [2] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [2] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [2] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    [2] Qi Sun, Xinlei Zhang, Chunyi Zhao, Wenming Tian, Shengye Jin.

    Fengke Sun, Boning Wu, Shengye Jin. Large bandgap oscillations in two-dimensional Dion–Jacobson phase perovskites caused by coherent longitudinal acoustic phonons [Invited][J]. Chinese Optics Letters, 2022, 20(10): 100010
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