70
Views
0
CrossRef citations to date
0
Altmetric
Articles

Synthesis of Novel Chromophore Based on Tricyanocyclopentenone Acceptor and Its NLO Property

, , &
Pages 1028-1035 | Received 17 Jul 2018, Accepted 29 Aug 2018, Published online: 31 Oct 2018

References

  • Yin, A., Q. He, Z. Lin, L. Luo, Y. Liu, S. Yang, H. Wu, M. Ding, Y. Huang, and X. Duan, “Plasmonic/Nonlinear Optical Material Core/Shell Nanorods as Nanoscale Plasmon Modulators and Optical Voltage Sensors,” Angewandte Chemie International Edition 55 (2016): 583.
  • Liu, J., G. Xu, F. Liu, I. Kityk, X. Liu, and Z. Zhen, “Recent Advances in Polymer Electro-optic Modulators,” RSC Advances 5 (2015): 15784.
  • Liu, J., W. Gao, I. Kityk, X. Liu, and Z. Zhen, “Optimization of Polycyclic Electron-donors based on Julolidinyl Structure in Push-pull Chromophores for Second Order NLO Effects,” Dyes Pigments 122 (2015): 74.
  • Kulhánek, J., F. Bureš, W. Kuznik, I. V. Kityk, T. Mikysek, and A. Růžička, “Ferrocene-Donor and 4,5-Dicyanoimidazole-Acceptor Moieties in Charge-Transfer Chromophores with p Linkers Tailored for Second-Order Nonlinear Optics,” Chemistry Asian Journal 8 (2013): 465.
  • Liu, J., W. Gao, X. Liu, and Z. Zhen, “Benefits of the use of Auxiliary Donors in the Design and Preparation of NLO Chromophores,” Materials Letters 143 (2015): 333.
  • Liu, J., M. Zhang, W. Gao, A. Fedorchuk, and I. Kityk, “Synthesis and Nonlinear Optical Properties of Novel Conjugated Small Molecules based on Indole Donor,” Journal of Molecular Structure 1165 (2018): 223.
  • Durand, R., S. Achelle, S. Gauthier, N. Cabon, M. Ducamp, S. Kahlal, J. Saillard, A. Barsella, and G. Robin-Le, “Incorporation of a Ferrocene Unit in the pi-conjugated Structure of Donor-linker-acceptor (D-pi-A) Chromophores for Nonlinear Optics (NLO),” Dyes and Pigments 155 (2018): 68.
  • Cheng, Z., R. Tang, R. Wang, Y. Xie, P. Chen, G. Liu, and Z. Li, “Photo-crosslinkable Second-order Nonlinear Optical Polymer: Facile Synthesis and Enhanced NLO Thermostability,” Polymer Chemistry 9 (2018): 3522.
  • Wang, C., and Y. Yuan, “The Influence of Aggregation on the Third-order Nonlinear Optical Property of pi-conjugated Chromophores: The Case of Cyanine Dyes,” Physical Chemistry Chemical Physics 20 (2018): 16777.
  • Lopes, T., D. Machado, C. Risko, J. Bredas, and H. Oliveira, “Bond Ellipticity Alternation: An Accurate Descriptor of the Nonlinear Optical Properties of pi-Conjugated Chromophores,” Journal of Physical Chemistry Letters 9 (2018): 1377.
  • Liu, Z., Hua, S., and X. Yan, “Linear and Nonlinear Optical Properties of Triphenylamine - Indandione Chromophores: Theoretical Study of the Structure - Function Relationship under the Combined Action of Substituent and Symmetry Change,” Journal of Physical Chemistry A 122 (2018): 2344.
  • Traskovskis, K., Bundulis, A., and I. Mihailovs, “Unusual Response to Environmental Polarity in a Nonlinear-optical Benzylidene-type Chromophore Containing a 1,3-bis(dicyanomethylidene) Indane Acceptor Fragment,” Physical Chemistry Chemical Physics, 20 (2018): 404.
  • Jang, S., J. Luo, N. Tucker, A. Leclercq, E. Zojer, M. Haller, T. Kim, J. Kang, K. Firestone, D. Bale, et al., “Pyrroline Chromophores for Electro-optics,” Chemistry of Materials, 18 (2006): 2982.
  • Liu, J., P. Si, X. Liu, and Z. Zhen, “Copper-catalyzed Huisgen Cycloaddition Reactions used to Incorporate NLO Chromophores into High Tg Side-Chain Polymers for Electro-Optics,” Optical Materials, 47 (2015): 256.
  • Benigh, S., D. Bale, B. Olbricht, and L. Dalton, “Organic Electro-optics: Understanding Material Structure/Function Relationships and Device Fabrication Issues,” Journal of Materials Chemistry, 19 (2009): 7466.
  • Li, Z., P. Chen, Y. Xie, Z. Li, and J. Qin, “Ar-Ar-F Self-Assembly of Star-Shaped Second-Order Nonlinear Optical Chromophores Achieving Large Macroscopic Nonlinearities,” Advanced Electronic Materials 3 (2017): 1700138.
  • Peng, C., J. Wu, J. Liu, L. Qiu, X. Liu, S. Bo, and Z. Zhen, “Synthesis and Optical Properties of New Fluorinated Second-order Nonlinear Optical Copolymers: An Attempt Toward the Balance between Solubility and Long-term Alignment Stability,” Polymer Chemistry 4 (2013): 2703.
  • Liu, J., W. Hou, S. Feng, L. Qiu, X. Liu, and Z. Zhen, “Synthesis and Nonlinear Optical Properties of Branched Pyrroline Chromophores,” Journal of Physical Organic Chemistry 24 (2011): 439.
  • Shi, Z., S. Hau, J. Luo, T. Kim, N. Tucker, J. Ka, H. Sun, A. Pyajt, L. Dalton, A. Chen, et al., “Highly Efficient Diels-alder Crosslinkable Electro-optic Dendrimers for Electric-Field Sensors,” Advances Functional Materials 17 (2007): 2557.
  • Liu, Y., H. Liu, G. Qin, Z. Gui, Z. Yang, and J. Liu, “Study of Novel Nonlinear Optical Material based on Poly(aryl ether ketone) and its Application in SHG Imaging,” Optical Materials 72 (2017): 392–396.
  • Seferoğlu, Z. “Recent Synthetic Methods for the Preparation of Charged and Uncharged Styryl-based NLO Chromophores: A Review,” Organic Preparations & Procedures International: The New Journal for Organic Synthesis 49 (2017): 293.
  • Catal, E., E. Keles, N. Seferoglu, S. Achelle, A. Barsella, F. Guen, and Z. Seferoglu, “Triphenylamine-based Allylidenemalononitrile Chromophores: Synthesis, and Photophysical and Second-order Nonlinear Optical Properties,” New Journal of Chemistry (in press), doi:10.1039/C8NJ02794C.
  • Szlachcic, P., A. A. Fedorchuk, A. Danel, B. Jarosz, A. M. El Naggar, A. A. Albassam, A. Wojciechowski, E. Gondek, T. Uchacz, K. Stadnicka, et al., “Optically Operated Second Order Optical Effects in some Substituted 4-(5-nitro-1,3-benzoxazol-2-yl)Aniline Chromophores,” Dyes and Pigments 141 (2017): 333.
  • Ouyang, C., J. Liu, Q. Liu, Y. Li, D. Yan, Q. Wang, M. Guo, and A. Cao, “Preparation of Main-Chain Polymers Based on Novel Monomers with D-pi-A Structure for Application in Organic Second-Order Nonlinear Optical Materials with Good Long-Term Stability,” ACS Applied Materials and Interfaces 9 (2017): 10366.
  • Marder, S., D. Beratan, and L. Cheng, “Approaches for Optimizing the 1st Electronic Hyperpolarizability of Conjugated Organic-molecules,” Science 252 (1991): 103.
  • Qudar, J., and D. Chemla, “Hyperpolarizabilities of Nitroanilines and their Relations to Excited-state Dipole-moment,” Journal of Chemical Physics 66 (1977): 2664.
  • Lee, C., W. Yang, and R. Parr, “Development of the Colle-Salvetti Correlation-energy Formula into a Functional of the Electron-density,” Physical Review B 37 (1988): 785.
  • Zhang, M., G. Qin, J. Liu, Z. Zhen, A. Fedorchuk, G. Lakshminarayana, A. Albassam, A. El-Naggar, K. Ozga, and I. Kityk, “Modification of Indole by Electron-rich Atoms and their Application in Novel Electron Donor Materials,” Chemical Physics Letters 681 (2017): 105.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.