Synthesis and Characterization of a Julolidine-based Electro-optic Molecular Glass

Author:

Chen Kexiang1,Wang Jiexue2,Li Lu1,Chang Le2,Yang Min2,Wang Qihui2,Li Zhonghui2,Deng Guowei2

Affiliation:

1. College of Chemistry and Materials Science, Sichuan Normal University, Chengdu, 610068, Sichuan, China

2. College of Chemistry and Life Science, Sichuan Provincial Key Laboratory for Structural Optimization and Application of Functional Molecules, Chengdu Normal University, Chengdu, 611130, China

Abstract

Aim: Organic electro-optic (EO) materials have recently gained considerable attention owing to their advantages compared to inorganic EO materials. Among different kinds of organic EO materials, organic EO molecular glass exhibits desired prospect because of its high chromo-phore loading density and large macroscopic EO activity. Introduction: The objective of this study is to design and synthesize a novel organic EO molecular glass JMG utilizing julolidine moiety as the electron donor, thiophene moiety as the conjugated bridge, trifluoromethyl substituted tricyanofuran derivate (Ph-CF3-TCF) as the electron acceptor. Methods: The JMG’s structure was characterized through NMR and HRMS. The photophysical property, glass transition temperature, first hyperpolarizability (β) and dipole moment (μ) of JMG were determined through UV-vis spectra, DSC test and DFT calculation. Results: JMG’s Tg reached to 79°C and it can form high-quality optical film. The theoretical calcu-lation shows that the first hyperpolarizability (β) and dipole moment (μ) of JMG were calculated to 730×10-30 esu and 21.898 D. After connecting poling with the poling voltage of 49 V/μm at 90℃ for 10 min, the highest EO coefficient (r33) of the poled JMG films reached to 147 pm/V. Conclusion: A novel julolidine-based NLO chromophore with two tert-butyldiphenylsilyl (TBDPS) groups was successfully prepared and characterized. TBDPS group is introduced as the film-forming group, and it also plays the role of isolation group, which can suppress the electrostatic in-teraction between chromophores, improve the poling efficiency and further enhance the EO activity. The excellent performances endow JMG with potential applications in device fabrication.

Funder

Natural Science Foundation of Sichuan

Undergraduate training program for innovation and entrepreneurship

Publisher

Bentham Science Publishers Ltd.

Subject

Organic Chemistry,Biochemistry

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