Jinhu Yuan , Shengbo Zhu , Jian Li , Lingchao Mo , Juanli Li , Yongliang Liu , Xiao Song , Minggang Hu , Zhongchen Yang , Boxin He
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引用次数: 0
Abstract
Dichroic dyes are favored in the field of smart windows by virtue of their excellent dimming properties. D–A–D dichroic dye molecules not only have good dichroic properties and photostability but also have good solubility in the host LC. In this study, we synthesized a series of D–A–D dichroic dye molecules with benzotriazole as an acceptor, discussed the effect of the symmetry of the methyl position on the parent nucleus on the dye properties, the optical properties of the dyes were modulated by introducing different electron donors at both ends of the mother nucleus. In addition, preparation of a guest/host mixture by dissolving guest dyes in the host LC and filling them into a LC cell, then the relationship between the dye structure and the dichroic properties of the devices was systematically investigated. The results showed that the absorption and emission spectra of the dyes with the methyl group in the symmetric position were red-shifted to different degrees, and the dichroic properties and photostability were better. Among which the UV–vis absorption wavelength and fluorescence emission wavelength of D44BNT-1 were the largest at 482 nm and 575 nm, respectively, and the dichroic properties of D5OBNT-1 was the best, with a dichroic ratio of 6.40. Meanwhile the color difference after 10 h of illumination had a small change, and the best photostability. These findings are of great significance for the development of new dichroic dyes.
期刊介绍:
The journal includes papers in the following areas:
– Simple organic liquids and mixtures
– Ionic liquids
– Surfactant solutions (including micelles and vesicles) and liquid interfaces
– Colloidal solutions and nanoparticles
– Thermotropic and lyotropic liquid crystals
– Ferrofluids
– Water, aqueous solutions and other hydrogen-bonded liquids
– Lubricants, polymer solutions and melts
– Molten metals and salts
– Phase transitions and critical phenomena in liquids and confined fluids
– Self assembly in complex liquids.– Biomolecules in solution
The emphasis is on the molecular (or microscopic) understanding of particular liquids or liquid systems, especially concerning structure, dynamics and intermolecular forces. The experimental techniques used may include:
– Conventional spectroscopy (mid-IR and far-IR, Raman, NMR, etc.)
– Non-linear optics and time resolved spectroscopy (psec, fsec, asec, ISRS, etc.)
– Light scattering (Rayleigh, Brillouin, PCS, etc.)
– Dielectric relaxation
– X-ray and neutron scattering and diffraction.
Experimental studies, computer simulations (MD or MC) and analytical theory will be considered for publication; papers just reporting experimental results that do not contribute to the understanding of the fundamentals of molecular and ionic liquids will not be accepted. Only papers of a non-routine nature and advancing the field will be considered for publication.