School of Chemistry, University of Hyderabad, Prof. C. R. Rao Road, Gachibowli, Hyderabad, 500046, Telangana, India.
Chem Asian J. 2019 Dec 13;14(24):4577-4581. doi: 10.1002/asia.201901221. Epub 2019 Oct 10.
Organic micro-heterostructures (MHS) with dual optical emissions are essential to produce miniaturized optical waveguides for wavelength division multiplexing technologies. The bimolecular MHS produced by solution-based bottom-up self-assembly technique often leads to poor surface smoothness, edge imperfection, defects, and unwanted thin films deposits. Conversely, sequential sublimation technique at ambient pressure facilitates effective integration of α-perylene micro-square with dicyanomethylene-2-methyl-6-(p-dimethylaminostyryl) 4H-pyran (DCM) microrods in an epitaxial manner to produce MHS. The obtained DCM/perylene MHS act as optical waveguides to produce red (λ ≈670 nm) or/and yellow (λ ≈607 nm) dual optical outputs via an energy transfer mechanism depending upon the heterostructures geometry and optical excitation positions. The presented dual-color emitting MHS optical waveguides are essential for the integrated nano-photonic and optoelectronic device structures.
具有双光学发射的有机微杂化结构(MHS)对于制造用于波分复用技术的微型化光学波导至关重要。通过基于溶液的自下而上的自组装技术制备的双分子 MHS 往往会导致表面平整度差、边缘不完美、缺陷和不需要的薄膜沉积。相反,在环境压力下的顺序升华技术有利于有效地将α-苝微正方形与二氰基乙烯-2-甲基-6-(对二甲氨基苯乙烯基)4H-吡喃(DCM)微棒以外延方式集成,从而产生 MHS。所获得的 DCM/苝 MHS 作为光学波导,通过能量转移机制产生红色(λ≈670nm)或/和黄色(λ≈607nm)双光学输出,具体取决于杂化结构的几何形状和光学激发位置。所提出的双颜色发射 MHS 光学波导对于集成的纳米光子学和光电设备结构至关重要。