Thermal, glass-forming, nonlinear optical and holographic properties of "push-pull" type azochromophores with triphenyl moieties containing isophorene and pyranylidene fragments

被引:0
作者
Zarins, Elmars [1 ]
Tokmakovs, Andrejs [2 ]
Kalnina, Zane [2 ]
Kokars, Valdis [1 ]
Rutkis, Martins [2 ]
Ozols, Andris [3 ]
Augustovs, Peteris [3 ]
Lazdovica, Kristine [1 ]
Kampars, Valdis [1 ]
机构
[1] Riga Tech Univ, Inst Appl Chem, 14-24 Azenes Str, LV-1048 Riga, Latvia
[2] Latvian State Univ, Inst Solid State Phys, LV-1063 Riga, Latvia
[3] Riga Tech Univ, Inst Tech Phys, LV-1048 Riga, Latvia
来源
ORGANIC PHOTONIC MATERIALS AND DEVICES XV | 2013年 / 8622卷
关键词
Molecular glasses; SRG; NLO; holographic gratings; azobenzene; isophorene; pyranylidene; SYMMETRIC STYRYL-4H-PYRAN-4-YLIDENE FRAGMENT; CHROMOPHORES; POLYMERS;
D O I
10.1117/12.2003085
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Molecular organic compounds with electron donating fragment bounded through pi-conjugated system with electron acceptor fragment, as well as with incorporated triphenyl groups in their molecules show potential for creating cheap and simple solution processable materials with nonlinear optical properties. Additional insertion of azobenzene fragment in their structures makes them also possible to form holographic volume and surface relief gratings (SRG) after exposure to laser radiation, which could be useful for holographic data storage. For these purposes polymers are generally used. However, their application is complicated and challenging task as in every attempt to obtain the same polymer it will have different physical properties. On the other hand, the synthetic procedure of molecular glasses is more simple as their structure and physical properties are strongly defined. Unfortunately, there is still no clear relation between compound organic structures and their thermal, glass-forming and optical properties. In order to investigate the above mentioned regularities, we have synthesized and investigated ten molecular glassy organic compounds with three different fragments as main backbones of the molecules: indene-1,3-dione (WE-1, WE-2, WE-3), isophorene (IWK-1D, IWK-2M, IWK-2D) and pyranylidene (DWK-2TB, ZWK-2TB, JWK-2TB, ZWK-3AZO). Compounds containing isophorene fragment in their molecules had the highest NLO efficiencies (d(33) up to 125.7 pm/V for IWK-2D) and also were the most effective holographic data storage compounds with holographic self diffraction efficiency 13% and holographic diffraction efficiency 20%, also for IWK-2D, but their thermal stability (T-d from 288 degrees C to 295 degrees C) and glass transition (T-g from 90 degrees C to 105 degrees C) values were just average. Pyranylidene type compounds had the highest thermal stability and highest glass transition (Tg from 115 degrees C to 180 degrees C). But their ability to form and maintain amorphous structure were low and they had average NLO efficiencies (d(33) up to 66.2 pm/V for ZWK-2TB) and average holographic self diffraction efficiency 2% and holographic diffraction efficiency 8% for ZWK-3AZO. The molecules with just azobenzene fragment and indene-1,3-dione as electron acceptor has the lowest thermal (T-d from 250 degrees C to 282 degrees C, T-g from 70 degrees C to 98 degrees C) and also the lowest holographic properties with holographic diffraction and self diffraction efficiencies at 4% for WE-1 and lower for other compounds. Nevertheless, some of the investigated molecular glasses show potential as multifunctional optical materials.
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页数:12
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