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Polarization-resolved spectroscopy imaging of grain boundaries and optical excitations in crystalline organic thin films

机译:结晶有机薄膜中晶界和光激发的偏振分辨光谱成像

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摘要

Exploration of optical properties of organic crystalline semiconductors thin films is challenging due to submicron grain sizes and the presence of numerous structural defects, disorder and grain boundaries. Here we report on the results of combined linear dichroism (LD)/ polarization-resolved photoluminescence (PL) scanning microscopy experiments that simultaneously probe the excitonic radiative recombination and the molecular ordering in solution-processed metal-free phthalocyanine crystalline thin films with macroscopic grain sizes. LD/PL images reveal the relative orientation of the singlet exciton transition dipoles at the grain boundaries and the presence of a localized electronic state that acts like a barrier for exciton diffusion across the grain boundary. We also show how this energy barrier can be entirely eliminated through the optimization of deposition parameters that results in films with large grain sizes and small-angle boundaries. These studies open an avenue for exploring the influence of long-range order on exciton diffusion and carrier transport.
机译:由于亚微米晶粒尺寸以及许多结构缺陷,无序和晶界的存在,探索有机晶体半导体薄膜的光学性能具有挑战性。在这里,我们报告线性二色性(LD)/偏振分辨光致发光(PL)扫描显微镜实验的结果,该实验同时探测了具有宏观晶粒尺寸的溶液处理的无金属酞菁晶体薄膜中的激子辐射复合和分子有序化。 LD / PL图像揭示了单重态激子跃迁偶极子在晶界处的相对取向以及局部电子态的存在,该电子态的作用类似于激子在晶界上扩散的障碍。我们还展示了如何通过优化沉积参数来完全消除这种能量障碍,从而使薄膜具有大晶粒尺寸和小角度边界。这些研究为探索远距离有序对激子扩散和载流子传输的影响开辟了一条途径。

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