Nematic Mixtures with Controlled Polarized Luminescence Based on (9,9-Di-n-octylfluorenyl-2,7-diyl) Polymer and Lanthanidomesogen

IF 0.3 Q4 CRYSTALLOGRAPHY
M. E. Karyakin, A. Krupin, A. Knyazev, Y. Galyametdinov
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Abstract

) and the conducting poly(9,9-di-n-octylflu-orenyl-2,7-diyl) polymer (PFO) were obtained. It was found that the resulting mixtures with a continuous solid solution belong to isomorphic systems of the Rozeboom type I and exhibit nematic mesomorphism at any ratio of components. Upon cooling to room temperature, the LC mixtures were vitrified with the preservation of the me-sophase packing. Using the orienting substrates, a planar-oriented film material based on an LC mixture containing 10 mol. % of PFO and 90 mol. % of the Eu(CPDk 3-5 ) 3 Bpy 17-17 complex was created. The dichroic ratio of photoluminescence R (it is the ratio of the luminescence intensities at 0º and 90º) of the obtained material is 5.4 at a ≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡ wavelength of 438 nm and 3.2 at a wavelength of 613 nm. It was found that the obtained film materials are capable of changing the luminescence color from light red to dark blue, depending on the UV irradiation wavelength or upon changing the angle between the polarizer plane and the molecular orientation direction. Thus, the possibility of obtaining oriented films of lanthanide-containing liquid-crystal mixtures with controlled polarization and luminescence color has been shown.
基于(9,9-二正辛基-芴基-2,7-二基)聚合物和镧系元素的可控偏振向列相混合物
)和导电聚(9,9-二-正辛烷-环氧-2,7-二基)聚合物(PFO)。结果表明,与连续固溶体的混合物属于Rozeboom型的同构体系,并且在任何组分的比例下都表现为向列亚同构。冷却至室温后,将LC混合物玻璃化,保存相填料。利用定向基底,以含有10 mol. % PFO和90 mol. % Eu(CPDk 3-5) 3 Bpy 17-17配合物的LC混合物为基础,制备了平面定向薄膜材料。光致发光的二向色性比R(发光强度的比例在0º和90º)获得的材料是5.4的≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡≡波长438 nm和3.2的波长613 nm。研究发现,所制备的薄膜材料能够根据紫外照射波长或改变偏振面与分子取向方向之间的夹角,将发光颜色从浅红色改变为深蓝色。从而表明了制备具有可控偏振和发光颜色的含镧液晶混合物取向薄膜的可能性。
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来源期刊
CiteScore
1.30
自引率
40.00%
发文量
30
期刊介绍: The Journal presents the following main directions of creation/construction, study and application of self-assembled materials: SYNTHESIS, STRUCTURE, PROPERTIES, MEDICINE, BIOLOGY, NANOTECHNOLOGY, SENSORS, PRACTICAL APPLICATION and INFORMATION. The journal is addressed to researchers, lecturers, university students, engineers. The publisher of the journal is the Nanomaterials Research Institute of "Ivanovo State University".
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