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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Crystallography and Molecular Arrangement of Polymorphic Monolayer J-Aggregates of a Cyanine Dye: Multiangle Polarized Light Fluorescence Optical Microscopy Study
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Crystallography and Molecular Arrangement of Polymorphic Monolayer J-Aggregates of a Cyanine Dye: Multiangle Polarized Light Fluorescence Optical Microscopy Study

机译:青色染料多态性单层J-聚集体的晶体学和分子布置:多聚偏振光荧光光学显微镜研究

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The molecular orientation in monolayer J-aggregates of 3,3-di(γ-sulfopropyl)-5,5-dichlorotiamonomethinecyanine dye has been precisely estimated using improved linear polarization measurements in the fluorescence microscope in which a multiangle set of polarization data is obtained using sample rotation. The estimated molecular orientation supplemented with the previously established crystallographic constraints based on the analysis of the well-developed two-dimensional J-aggregate shapes unambiguously indicate the staircase type of molecular arrangement for striplike J-aggregates with the staircases oriented along strips. The molecular transition dipoles are inclined at an angle of ~25° to the strip direction, whereas the characteristic strip vertex angle ~45° is formed by the [100] and [1–10] directions of the monoclinic unit cell. Measurements of the geometry of partially unwound tubes and their polarization properties support the model of tube formation by close-packed helical winding of flexible monolayer strips. In the tubes, the long molecular axes are oriented at a small angle in the range of 5–15° to the normal to the tube axis providing low bending energy. At a nanoscale, high-resolution atomic force microscopy imaging of J-aggregate monolayers reveals a complex quasi-one-dimensional organization.
机译:使用改进的线性偏振测量在使用的荧光显微镜中,精确地估计了3,3-DI(γ-磺基)-5,5,5,5-二氯胺查霉胺的单层J-聚集体的分子取向精确地估计了多聚偏振数据的荧光显微镜。样品旋转。基于先前建立的基于良好的二维J-骨料形状的分析的估计的分子取向毫不含糊地指示用沿着条带定向的楼梯沿着阶梯序列的阶梯式分子布置的阶梯式分子装置。分子过渡偶极子以〜25°的角度倾斜,而单斜晶单元电池的[100]和[1-10]方向形成特征条顶点角〜45°。部分展开管的几何形状及其偏振性能通过柔性单层条带的近填充螺旋绕组支持管形成模型。在管中,长分子轴以小角度定向,在5-15°的范围内,到管轴线的正常情况下提供低弯曲能量。在纳米级,J-骨料单层的高分辨率原子力显微镜显微镜显露出一个复杂的准一维组织。

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