Volume 49 Issue 1
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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): 0107001-0107001(8). doi: 10.3788/IRLA202049.0107001
Citation: 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): 0107001-0107001(8). doi: 10.3788/IRLA202049.0107001

Study on preparation and performance of nonlinear optical limiting of polymers material containing indium phthalocyanine and graphene oxide

doi: 10.3788/IRLA202049.0107001
  • Received Date: 2019-10-11
  • Rev Recd Date: 2019-11-21
  • Publish Date: 2020-01-28
  • The diaminodikhunophenoxy chloride indium phthalocyanine (Pc) was covalently bonded with carboxylated GO (GO-COOH) to obtain the diaminodikhunophenoxy chloride indium phthalocyanine-graphene oxide (Pc-GO-COOH), and the bonding products as raw material of the reaction initiator. Four kinds of polymer samples with different molecular weight were obtained by atom transfer radical polymerization (ATRP) with methyl methacrylate (MMA) as polymerization monomer. The molecular weight and molecular weight distribution of the prepared polymers were tested by gel permeation chromatography (GPC). The test results show that the preparation of polymers has narrow molecular weight distribution, the polymer reaction presents good controllability. The results of third-order nonlinear optical properties test on polymer sample solution by Z-scan show that the preparation of polymer has excellent third-order nonlinear optical properties, and when the molecular weight of polymer, respectively 9 063 and 12 196, the third order nonlinear polarizability values are 8.1×10-11 esu and 2.1×10-11 esu. At the same time, the optical limiting performance test show the effective excitation and ground state absorption cross section ratios of the two samples are 2.69 and 2.20, respectively. It has a good limiting ability and a great application prospect.
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    [2] Unnikrishnan K P, Thomas J, Nampoori V P N, et al. Third order nonlinear optical studies in europium naphthalocyanine using degenerate four wave mixing and Z-scan[J]. Optical Commun, 2002, 204:385-390.
    [3] Unnikrishnan K P, Thomas J, Nampoori V P N, et al. Nonlinear absorption in certain metal phthalocyanines at resonant and near resonant wavelengths[J]. Opt Commun, 2003, 217:269-274.
    [4] Neher D, Kaltbeitzel A, Wolf A, et al. Chance, Editors. Conjugated polymeric materials:opportunities in electronics, optoelectronics, and molecular electronics[J]. Dordrecht:Kluwer Academic, 1990, 387.
    [5] Hanack M, Schneider T, Barthel M, et al. Indium phthalocyanines and naphthalocyanines for optical limiting[J]. Coord Chem Rev, 2001, 219-221:235-258.
    [6] Chen Y, Song Y, Qu S. Novel metallo-phthalocyanine with high performances for ns optical limting in solution[J]. Opt Mater, 2001, 18(2):219-223.
    [7] Kazuyuki Ishii, Naoko Sakai. Wavelength-tunable excited-state absorption and optical limiting effects in the Q band region based on silicon phthalocyanine oligomers[J]. Phys. Chem Chem Phys, 2010, 12:15354-15357.
    [8] Chang Qing, Ye Hongan. Optical limiting properties of naphthalocyanine lead[J]. Acta Optica Sinica, 2004, 24(3):360-363.
    [9] Huang Yi, Chen Yongsheng. Functionalization of graphene and their applications[J]. Science in China Series B-Chemistry, 2009, 39(9):887-896.
    [10] Zhu J H, Li Y X, Chen Y, et al. Graphene oxide covalently functionalized with zinc phthalocyanine for broadband optical limiting[J]. Carbon, 2011, 49:1900-1905.
    [11] Li Y X, Zhu J H, Chen Y, et al. Synthesis and strong optical limiting response of graphite oxide covalently functionalized with gallium phthalocyanine[J]. Nanotechnology, 2011, 22(20):205704-205711.
    [12] Xu Y F, Liu Z B, Zhang X L, et al. A graphene hybrid material covalently functionalized with porphyrin:Synthesis and Optical Limiting Property[J]. Adv Mater, 2009, 21:1275-1279.
    [13] Bala M, Murali Krishna, Venkatramaiah N, et al. Synthesis and structural, spectroscopic and nonlinear optical measurements of graphene oxide and its composites with metal and metal free porphyrins[J]. J Mater Chem, 2012, 22:3059-3068.
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Study on preparation and performance of nonlinear optical limiting of polymers material containing indium phthalocyanine and graphene oxide

doi: 10.3788/IRLA202049.0107001
  • School of Chemistry and Environmental Engineering, Changchun University of Science and Technology, Changchun 130022, China

Abstract: The diaminodikhunophenoxy chloride indium phthalocyanine (Pc) was covalently bonded with carboxylated GO (GO-COOH) to obtain the diaminodikhunophenoxy chloride indium phthalocyanine-graphene oxide (Pc-GO-COOH), and the bonding products as raw material of the reaction initiator. Four kinds of polymer samples with different molecular weight were obtained by atom transfer radical polymerization (ATRP) with methyl methacrylate (MMA) as polymerization monomer. The molecular weight and molecular weight distribution of the prepared polymers were tested by gel permeation chromatography (GPC). The test results show that the preparation of polymers has narrow molecular weight distribution, the polymer reaction presents good controllability. The results of third-order nonlinear optical properties test on polymer sample solution by Z-scan show that the preparation of polymer has excellent third-order nonlinear optical properties, and when the molecular weight of polymer, respectively 9 063 and 12 196, the third order nonlinear polarizability values are 8.1×10-11 esu and 2.1×10-11 esu. At the same time, the optical limiting performance test show the effective excitation and ground state absorption cross section ratios of the two samples are 2.69 and 2.20, respectively. It has a good limiting ability and a great application prospect.

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