首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Thermal Behavior of J-Aggregates in a Langmuir-Blodgett Film of Pure Merocyanine Dye Investigated by UV-visible and IR Absorption Spectroscopy
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Thermal Behavior of J-Aggregates in a Langmuir-Blodgett Film of Pure Merocyanine Dye Investigated by UV-visible and IR Absorption Spectroscopy

机译:紫外可见光谱和红外吸收光谱研究纯花青染料Langmuir-Blodgett膜中J聚集体的热行为

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We have characterized the structure of J-aggregate in a Langmuir-Blodgett film of pure merocyanine dye (MS18) fabricated under an aqueous subphase containing a cadmium ion (Cd2+) and have investigated its thermal behavior by UV-visible and IR absorption spectroscopy in the range from 25 to 250 degrees C with a continuous scan. The results of both UV-visible and IR absorption spectra indicate that temperature-dependent changes in the MS18 aggregation state in the pure MS18 system are closely and mildly linked with the MS18 intramolecular charge transfer and the behavior of the packing, orientation, conformation, and thermal mobility of MS18 hydrocarbon chain.. respectively. The J-aggregate in the pure MS18 system dissociates from 25 to 150 degrees C, and the dissociation temperature at 150 degrees C is higher by 50 degrees C than that in the previous MS18-arachidic acid (C-20) binary system. The lower dissociation temperature in the binary system originates from the fact that temperature-dependent structural disorder of cadmium arachidate (CdC20), being phase-separated from MS18, has an influence on the dissociation of J-aggregate. From 160 to 180 degrees C, thermally induced blue-shifted bands, caused by the oligomeric MS18 aggregation, appear at around 520 nm in the pure MS18 system by contraries, regardless of the lack of driving force by the melting phenomenon of CdC20. The temperature at which the 520 nm bands occur is in good agreement with the melting point (160 degrees C) of hydrocarbon chain in MS18 with Cd2+, whereas its chromophore part is clearly observed to melt near 205 degrees C by UV-visible spectra. Therefore, it is suggested that the driving force that induces the 520 nm band in the pure MS18 system arises from the partial melting of hydrocarbon chain in MS18 with Cd2+.
机译:我们已经表征了在含镉离子(Cd2 +)的水相下制备的纯部花青染料(MS18)的Langmuir-Blodgett膜的Langmuir-Blodgett膜中的J-聚集体的结构,并通过紫外可见和IR吸收光谱研究了其热行为。连续扫描的温度范围是25至250摄氏度。紫外-可见光谱和红外吸收光谱的结果均表明,纯MS18系统中MS18聚集状态的温度依赖性变化与MS18分子内电荷转移以及堆积,取向,构象和MS18烃链的热迁移率。纯MS18系统中的J聚集体从25到150摄氏度解离,并且150摄氏度下的解离温度比以前的MS18花生酸(C-20)二元系统高50摄氏度。二元体系中较低的离解温度源自以下事实:与MS18相分离的花生四烯酸镉(CdC20)的温度依赖性结构无序对J聚集体的离解有影响。从160到180摄氏度,由纯MS18聚合引起的由热引起的蓝移带在相反的纯净MS18系统中出现在520 nm左右,而与CdC20熔融现象缺乏驱动力无关。出现520 nm谱带的温度与含Cd2 +的MS18中烃链的熔点(160℃)高度吻合,而通过紫外可见光谱清楚地观察到其发色团部分在205℃附近熔化。因此,建议在纯MS18系统中诱导520 nm谱带的驱动力来自MS18中具有Cd2 +的烃链的部分熔融。

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