Light Emitting Properties of Molecular Thin Films with Epitaxially Oriented and Confined Structures

H. Yanagi, T. Morikawa, S. Hotta, K. Yase
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引用次数: 1

Abstract

Abstract One-dimensional needlelike crystals of energy-band-tuned thiophene/p-phenylene co-oligomers were epitaxially grown by vapor-deposition onto the KCl (001) surface. Fluorescence spectroscopy and microscopy elucidated various emission color depending on their frontier orbital energies which were changed by the coplanar or twisted molecular structures. The emitted light was confined within the co-oligomer crystals and self-waveguided along the needle axis, then radiated from the tips of the needles. When the co-oligomer needles were confined in a heterostructure within a thin film of a wide-bandgap p-sexiphenyl oligomer, the self-waveguided emission from the co-oligomer was also observed due to the confinement of excitons and emitted light in the crystal.
外延取向和受限结构分子薄膜的发光特性
摘要采用气相沉积的方法在KCl(001)表面外延生长出一维带调谐噻吩/对苯共聚物针状晶体。荧光光谱和显微镜分析表明,它们的前沿轨道能量随共面或扭曲分子结构的改变而改变,从而产生不同的发射颜色。发射光被限制在共低聚物晶体内,沿针尖轴自波导,然后从针尖向外辐射。当共低聚物针状结构被限制在宽禁带对性苯基低聚物薄膜中的异质结构中时,由于激子的限制,共低聚物的自波导发射也在晶体中被观察到。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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