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多晶型单层菁染料 J-聚集态的晶体学和分子排列:多角度偏振光荧光光学显微镜研究。

Crystallography and Molecular Arrangement of Polymorphic Monolayer J-Aggregates of a Cyanine Dye: Multiangle Polarized Light Fluorescence Optical Microscopy Study.

机构信息

A. N. Frumkin Institute of Physical Chemistry and Electrochemistry , RAS , Leninsky Prospect 31 , Moscow 199071 , Russia.

出版信息

Langmuir. 2018 Apr 24;34(16):4803-4810. doi: 10.1021/acs.langmuir.8b01008. Epub 2018 Apr 10.

DOI:10.1021/acs.langmuir.8b01008
PMID:29601203
Abstract

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.

摘要

使用荧光显微镜中改进的线性偏振测量,精确估计了 3,3-二(γ-磺丙基)-5,5-二氯噻吨甲亚胺染料单层 J 聚集体中的分子取向,其中使用样品旋转获得了多角度的偏振数据集。估计的分子取向与之前基于二维 J 聚集体形状的分析建立的晶体学约束相结合,明确表明了条带状 J 聚集体的阶梯型分子排列,阶梯沿条带排列。分子跃迁偶极子相对于条带方向倾斜约 25°,而特征条带顶角约 45°是由单斜晶胞的[100]和[1-10]方向形成的。部分解开的管的几何形状测量及其偏振特性支持由柔性单层条带紧密螺旋缠绕形成管的模型。在管中,长分子轴以小角度取向,范围在 5-15°至管轴法线,从而提供低弯曲能量。在纳米尺度上,通过原子力显微镜对 J 聚集体单层的高分辨率成像揭示了复杂的准一维组织。

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