[1] Rao S V, Srinivas N K M N, Rao D N, et al. Studies of third-order optical nonlinearity and nonlinear absorption in tetra tolyl porphyrins using degenerate four wave mixing and Z-scan [J]. Optics Communications, 2000, 182(1-3): 255-264. doi:  10.1016/S0030-4018(00)00808-7
[2] Wu Xingzhi, Zhou Wenfa, Shen Lei, et al. Conjugated twistacene as high-performance optical limiting material for ultrafast broadband laser protection [J]. Infrared and Laser Engineering, 2019, 48(11): 1103001. doi:  10.3788/IRLA201948.1103001
[3] Terazima M, Shimizu H, Osuka A. The third-order nonlinear optical properties of porphyrin oligomers [J]. Journal of Applied Physics, 1997, 81(7): 2946-2951. doi:  10.1063/1.364325
[4] Zhang Jian, Song Yinglin, Yan Xiusheng, et al. Twistacene-modified heteroarenes: synthesis, characterization and optical limiting response [J]. Infrared and Laser Engineering, 2019, 48(11): 1103005. doi:  10.3788/IRLA201948.1103005
[5] Ma Pengfei, Liu Dajun, Zhou Fenguo. Study on preparation and performance of nonlinear optical limiting of polymers material containing indium phthalocyanine and graphene oxide [J]. Infrared and Laser Engineering, 2020, 49(1): 0107001.
[6] Blau W, Byrne H, Dennis W M, et al. Reverse saturable absorption in tetraphenylporphyrins [J]. Optics Communications, 1985, 56(1): 25-29. doi:  10.1016/0030-4018(85)90059-8
[7] Liu M O, Tai C H, Wang W Y, et al. Microwave-assisted synthesis and reverse saturable absorption of phthalocyanines and porphyrins [J]. Journal of Organometallic Chemistry, 2004, 689(6): 1078-1084. doi:  10.1016/j.jorganchem.2004.01.017
[8] Zheng Wenqi, Shan Ning, Fa Huanbao, et al. Optical limiting properties of porphyrin monomers and dimers [J]. Journal of Jilin University(Science Edition), 2013, 51(1): 135-139.
[9] Li D J, Gu Z G, Zhang J. Auto-controlled fabrication of a metal-porphyrin framework thin film with tunable optical limiting effects [J]. Chemical Ence, 2020: 11.
[10] Hafiz Muhammad Asif,Arshad Iqbal,Yunshan Zhou, et al. Preparation, characterization and third order optical nonlinearities of looped covalently bonded Anderson-type polyoxometalate-porphyrin hybrids [J]. Dyes and Pigments, 2021, 184: 108758. doi:  10.1016/j.dyepig.2020.108758
[11] Xiao Y H, Gu Z G, Zhang J. Vapor-assisted epitaxial growth of porphyrin-based MOF thin film for nonlinear optical limiting [J]. Science China-Chemistry, 2020, 63(8): 1059-1065.
[12] Wang A, Cheng L, Chen X, et al. Efficient optical limiting of polypyrrole ternary nanohybrids co-functionalized with peripherally substituted porphyrins and axially coordinated metal-porphyrins [J]. Dalton Transactions, 2019, 48: 14467-14477.
[13] Jiang P, Zhang B, Liu Z, et al. MoS2 quantum dots chemically modified with porphyrin for solid-state broadband optical limiters [J]. Nanoscale, 2019, 11(43): 20449-20455. doi:  10.1039/C9NR06604G