Synthesis, crystal structures, and second-order nonlinear optical properties of new chiral ferrocenyl materials

被引:108
|
作者
Balavoine, GGA
Daran, JC
Iftime, G
Lacroix, PG
Manoury, E
Delaire, JA
Maltey-Fanton, I
Nakatani, K
Di Bella, S
机构
[1] Chim Coordinat Lab, F-31077 Toulouse, France
[2] Ecole Normale Super, CNRS, UA 1906, PPSM, F-94235 Cachan, France
[3] Univ Catania, Dipartimento Sci Chim, I-95125 Catania, Italy
关键词
D O I
10.1021/om980826y
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
A series of chiral enantiomerically pure analogues of (E)-(2-(4-nitrophenyl)ethenyl)ferrocene (2), substituted by R (3, R = Me; 4, R = CH2OH; 5, R = SiMe3), in the 2-position on the cyclopentadienyl ring, were synthesized. Measurements by electric-field-induced second-harmonic generation (EFISH) and calculations by INDOS/CI-SOS show that the different chromophores have closely related molecular NLO responses. However, the crystal packings for the different compounds, observed by X-ray diffraction on a monocrystal, are completely different. In any case, the chirality of the constituting molecules avoids the centrosymmetry of the crystals and therefore preserves the NLO efficiency in the solid state. In the case of 3, the crystal packing is close to the centrosymmetry and so the bulk NLO efficiency is low (6 times that of urea, lambda = 1.907 mu m) but not nil, as is the case for 2. For 4, the crystal packing is much better for NLO (efficiency 20 times that of urea, lambda = 1.907 mu m) and is almost optimized for 5 (efficiency 100 times that of urea, lambda = 1.907 mu m). The correlation between molecular and bulk NLO responses was studied using the model proposed by Zyss.
引用
收藏
页码:21 / 29
页数:9
相关论文
共 50 条
  • [11] Chiral materials in second-order nonlinear optics
    Kauranen, Martti
    Verbiest, Thierry
    Persoons, André
    Journal of Nonlinear Optical Physics and Materials, 1999, 8 (02): : 171 - 189
  • [12] Chiral materials in second-order nonlinear optics
    Kauranen, M
    Busson, B
    Verbiest, T
    Persoons, A
    LINEAR AND NONLINEAR OPTICS OF ORGANIC MATERIALS, 2001, 4461 : 5 - 14
  • [13] Chiral materials in second-order nonlinear optics
    Kauranen, M
    Verbiest, T
    Persoons, A
    JOURNAL OF NONLINEAR OPTICAL PHYSICS & MATERIALS, 1999, 8 (02): : 171 - 189
  • [14] Design, synthesis and characterization of organic second-order nonlinear optical crystal materials DOBS
    Xu, Kai
    Chen, Rui
    Wang, Tianhua
    Sun, Lijie
    Wang, Qibo
    Ma, Jinkang
    Zhong, Degao
    Cao, Lifeng
    Teng, Bing
    JOURNAL OF MOLECULAR STRUCTURE, 2023, 1282
  • [15] Synthesis, crystal growth, and second-order nonlinear optical properties of new configurationally locked polyene derivatives
    Zhang, Xinyuan
    Jiang, Xingxing
    Li, Yin
    Lin, Zheshuai
    Zhang, Guochun
    Wu, Yicheng
    CRYSTENGCOMM, 2015, 17 (05): : 1050 - 1055
  • [16] Second-order nonlinear optical properties of metallorganic materials.
    Di Bella, S
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2001, 221 : U687 - U687
  • [17] Towards new organometallic second-order nonlinear optical materials
    Roy, AL
    Chavarot, M
    Rose, E
    Rose-Munch, F
    Attias, AJ
    Kréher, D
    Fave, JL
    Kamierszky, C
    COMPTES RENDUS CHIMIE, 2005, 8 (08) : 1256 - 1261
  • [18] Synthesis of new organic/inorganic nonlinear optical composites and its second-order nonlinear optical properties
    Xi, Hong-Xia
    Wang, Huan
    Li, Zhong
    Liang, Zhao-Xi
    Huanan Ligong Daxue Xuebao/Journal of South China University of Technology (Natural Science), 2001, 29 (05): : 45 - 49
  • [19] Second-order nonlinear optics based on chiral materials
    Kauranen, Martti
    Busson, Bertrand
    Van Elshocht, Sven
    Verbiest, Thierry
    Persoons, André
    Nuckolls, Colin
    Katz, Thomas J.
    Optics and Photonics News, 2000, 11 (12): : 24 - 25
  • [20] Synthesis and crystal structures of phenylethynylpyridinium derivatives for second-order nonlinear optics
    Umezawa, H
    Okada, S
    Oikawa, H
    Matsuda, H
    Nakanishi, H
    BULLETIN OF THE CHEMICAL SOCIETY OF JAPAN, 2005, 78 (02) : 344 - 348