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Solution processable piperazine and triphenyl moiety containing non- symmetric bis-styryl-DWK type molecular glasses with light-emitting and amplified spontaneous emission properties

机译:具有发光和放大的自发发射特性的可溶液加工的哌嗪和三苯基部分含非对称双苯乙烯基-DWK型分子玻璃

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A series of 2,6-bis-styryl-4H-pyran-4-ylidene fragment containing glassy organic compounds with chemically stable bonding of amorphous phase promoting bulky triphenyl moieties through piperazine structural fragment (DWK-T dyes) in a form of 2-(5,5,5-triphenylpentyl)piperazin-l-yl)styryl)-substituent have been synthesized and investigated as the potential gain medium component for organic solid state laser applications. Physical properties of the dyes vary and are mostly depending from the other styryl-substituent attached to the 4H-pyran-4-ylidene backbone fragment in 6-position. Thermal stability of synthesized dyes is above 312°C with the glass transitions from 97°C to 109°C. Obtained neat spin-cast films based on these compounds exhibit photoluminescence with λ_(max) in range from 672 nm to 695 nm, ASE λ_(max) from 690 nm to 704 nm with ASE threshold values in range from 327 μJ/cm~2 to 1091 μJ/cm~2. Parameters are mostly influenced by the electron affinities of various 4-substituents in 6-styryl-fragment. The proposed synthetic approach could be useful for obtaining stable covalently bonded bulky triphenyl group containing glassy dyes while the synthetic design allows to acquire different non-symmetric 2,6-bis-styryl-4H-pyran-4-ylidene fragment containing compounds for infra-red light-emitting and light amplification systems.
机译:一系列2,6-双-苯乙烯基-4H-吡喃-4-亚烷基片段,其中含有玻璃态有机化合物,化学性质稳定地结合了无定形相,并通过哌嗪结构片段(DWK-T染料)以2-的形式促进了庞大的三苯基部分。已经合成了(5,5,5-三苯基戊基)哌嗪-1-基)苯乙烯基)取代基,并将其作为有机固态激光应用的潜在增益介质组分。染料的物理性质各不相同,并且主要取决于在6位上连接到4H-吡喃-4-亚烷基主链片段的其他苯乙烯基取代基。合成染料的热稳定性在312°C以上,并且玻璃化转变温度从97°C到109°C。基于这些化合物获得的整洁的自旋流延膜具有λ_(max)在672 nm至695 nm范围内的ASEλ_(max)在690 nm至704 nm范围内的ASE阈值在327μJ/ cm〜2范围内的光致发光至1091μJ/ cm〜2。参数主要受6-苯乙烯基片段中各种4-取代基的电子亲和力的影响。拟议的合成方法可能对于获得稳定的含共价键的大体积含三苯基基团的玻璃状染料有用,而合成设计允许获得不同的非对称的2,6-双-苯乙烯基-4H-吡喃-4-亚烷基片段,用于红外红色发光和光放大系统。

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