• Acta Optica Sinica
  • Vol. 30, Issue 4, 1122 (2010)
Gao Lili1、*, Chen Yu1, He Nan1, Liu Ying1, Wang Jun2, and Blau W. J.2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • show less
    DOI: 10.3788/aos20103004.1122 Cite this Article Set citation alerts
    Gao Lili, Chen Yu, He Nan, Liu Ying, Wang Jun, Blau W. J.. Studies on the Nonlinear Optical and Optical Limiting Properties of Perfluorinated Titanium (IV) Phthalocyanines[J]. Acta Optica Sinica, 2010, 30(4): 1122 Copy Citation Text show less
    References

    [1] For more information,please visit USAF Institute for National Security Studies (INSS) home page at www. usafa.af.mil/inss

    [2] Abc News reported on Dec. 30,2004. See http://abcnews.go.com

    [3] C. W. Spangler. Recent development in the design of organic materials for optical power limiting[J]. J. Mater. Chem.,1999,9:2013-2020

    [4] Xu Jie,Zhao Shanghong,Wang Huaijun et al.. High power optical fiber laser for tactical laser weapon[J]. Laser Journal,2007,28(5):6-7

    [5] Wang Pinghe,Liao Xian,Rao Yunjiang et al.. A novel self-exciting brillouin erbium-doped fiber laser[J]. Acta Optcia Sinica,2007,27(12):2200-2204

    [6] Wang Qingyue,Hu Minglie,Song Youjian et al.. Large-mode-area photonic crystal fiber laser durput high average power femtosecond pulses[J]. Chinese J. Lasers,2007,34(12):1603-1606

    [7] Wang Yuanhu,Qu Yanchen,Zhao Weijiang et al.. Tunable TEA.CO2 laser by a two-dimensional scanning system[J]. Chinese J. Lasers,2008,35(3):359-362

    [8] Y. Chen,M. Hanack,Y. Araki et al.. Axially modified gallium phthalocyanines and naphthalocyanines for optical limiting[J]. Chem. Soc. Rev.,2005,34(6):517-529

    [9] Y. Chen,M. E. EI-Khouly,J. J. Doyle et al.. Phthalocyanines and Related Compounds:Nonlinear Optical Response and Photoinduced Electron transfer Process[M]. Handbook of Organic Electronics and Photonics Stevenson Ranch,California,USA:American Scientific Publishers,2008,2:151-181

    [10] Y. Chen,Y. Lin,Y. Liu et al.. Carbon nanotube-based functional materials for optical limiting[J]. J. Nanosci. Nanotechn.,2007,7:1268-1283

    [11] M. Calvete,G. Y. Yang,M. Hanack. Porphyrins and phthalocyanines as materials for optical limiting[J]. Synth. Met.,2004,141:231-243

    [12] J. J. Doyle,B. Ballesteros,G. Torre et al.. Combination of phthalocyanine and fullerene moieties for optical limiting [J]. Chem. Phys. Lett.,2006,428:307-311

    [13] G. J. Zhou,W. Y. Wong,C. Ye et al.. Optical power limiters based on colorless di-,oligo-,and polymetallaynes:highly transparent materials for eye protection devices[J]. Adv. Funct. Mater.,2007,17:963-975

    [14] M. Barthel,D. Dini,S. Vagin et al.. An easy route for the synthesis of new axially substituted titanium(IV) phthalocyanines[J]. Eur. J. Org. Chem.,2002,3756-3762

    [15] Y. Chen,M. E. EI-Khouly,M. Sasaki et al.. Synthesis of the axially substituted titanium Pc-C60 dyad with a convenient method[J]. Org. Lett.,2005,7:1613-1616

    [16] Y. Hung,T. R. Klose,T. M. Regan et al.. U.S. Patent:4701396,1987. 9-11

    [17] M. Handa,A. Suzuki,S. Shoji et al.. Spectral and electrochemical properties of vanadyl hexadecafluorophthalocyanine[J]. Inorg. Chim. Acta,1995,230:41-44

    [18] D. Schlettwein,H. Tada,S. Mashiko. Substrate-induced order and multilayer epitaxial growth of substituted phthalocyanine thin films[J]. Langmuir,2000,16:2872-2881

    [19] G. Y. Yang,M. Hanack,Y. W. Lee et al.. Synthesis and nonlinear optical properties of fluorine-containing naphthalocyanines[J]. Chem. Eur. J,2003,9:2758-2762

    [20] M. Sheik-Bahae,A. A. Said,T. H. Wie et al.. Sensitive measurement of optical nonlinearities using a single beam[J]. IEEE J. Quant. Electron.,1990,26:760-769

    [21] Y. Chen,D. Dini,M. Hanack et al.. Excited state properties of monomeric and dimeric axially bridged indium phthalocyanines upon UV-Vis laser irradiation [J]. Chem. Commun.,2004,340-341

    [22] Y. Chen,L. R. Subramanian,M. Fujitsuka et al.. Synthesis and optical limiting properties of axially bridged phthalocyanines:[tBu4PcGa]2O and [tBu4PcIn]2O[J]. Chem. Eur. J,2002,8(18):4248-4254

    [23] H. Heckmann. New Dyes for Optical Limiting:Indium Phthalocyanines and Naphthalocyanines[M]. PhD Thesis,Uni. Tuebingen,1999

    [24] Y. Chen,M. Barthel,M. Seiler et al.. An axially bridged indium phthalocyanine dimer with an in-in bond [J]. Angew. Chem. Int. Ed. Engl.,2002,41:3239-3242

    [25] M. Hanack,T. Schneider,M. Batrthel et al.. Indium phthalocyanines and naphthalocyanines for optical limiting [J]. Coord. Chem. Rev.,2001,219-221:235-258

    [26] D. Dini,M. J. F. Calvete,M. Hanack. Nonlinear transmission of a tetrabrominated naphthalo-cyaninato indium chloride[J]. J. Phys. Chem. B,2006,110:12230-12239

    [27] W. F. Sun,G. Wang,Y. J. Li. Axial halogen ligand effect on photophysics and optical power limiting of some indium naphthalocyanines[J]. J. Phy. Chem. A,2007,111:3263-3270

    [28] J. J. Doyle,J. Wang,S. M. O′Flaherty et al.. Nonlinear optical performance of chemically tailored phthalocyanine-polymer films as solid-state optical limiting devices[J]. J. Opt. A:Pure Appl. Opt.,2008,10:075101-075109

    [29] Y. Chen,N. He,J. J. Doyle et al.. Enhancement of optical limiting response by embedding gallium phthalocyanine into polymer host[J]. J. Photochem. Photobio. A:Chem.,2007,189:414-417

    [30] Y. Chen,J. J. Doyle,Y. Liu et al.. Optoelectronic and nonlinear optical properties of tBu4PcTiO/polymer composite materials[J]. J. Photochem. Photobio. A:Chem.,2007,185:263-270

    CLP Journals

    [1] Hou Xiaoke, Yao Yong, Du Xiguang, Ma Chunyu, Zhang Shengli, Yang Yatao. Near-Infrared Luminescence Characteristics at 1.3 μm Range of Narrow Band-Gap Phthalocyanines Thin Film[J]. Acta Optica Sinica, 2013, 33(s1): 116001

    [2] Song Qiuyan, Chen Genxiang, Zhao Minggen, Li Tong. Study of Synthesis and Optical Properties of Ferrocene Derivative Doped Polyimide Film[J]. Laser & Optoelectronics Progress, 2015, 52(6): 61901

    [3] Yuan Bo, Wei Hang, Yang Fan, Li Quan, Luo Kaijun, Zhao Keqing. Theoretical Studies on UV-Vis Absorption Spectra and the Third-Order Nonlinear Optical Coefficients of Cyclometalated Platinum Complexes with Long Chain β-Diketonate Ancillary Ligands[J]. Acta Optica Sinica, 2011, 31(4): 416005

    [4] Han Likun, Jiang Yadong, Li Yuanxun. Study on the Preparation and Properties of the Nonlinear Optical Polymer Containing Tricyanofuran Units[J]. Acta Optica Sinica, 2011, 31(1): 131004

    [5] Cheng Kun, Zhao Junpu, Hu Dongxia, Dai Wanjun, Yuan Qiang, Zhou Wei, Zhang Xin, Deng Wu, Jiang Xuejun, Zhang Kun, Zhang Xiaomin, Jing Feng. Dynamic Response Characteristics of Super-Gaussian Pulse to Reverse Saturable Absorption Effect[J]. Chinese Journal of Lasers, 2012, 39(2): 202002

    [6] Chen Yuxia, Liu Junhui, Huang Mingju. Study on the Spectral Properties and Optical Limiting Performance of a New Fluorene Derivative[J]. Acta Optica Sinica, 2012, 32(2): 216002

    Gao Lili, Chen Yu, He Nan, Liu Ying, Wang Jun, Blau W. J.. Studies on the Nonlinear Optical and Optical Limiting Properties of Perfluorinated Titanium (IV) Phthalocyanines[J]. Acta Optica Sinica, 2010, 30(4): 1122
    Download Citation