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Self-assembled coronene nanofibers: optical waveguide effect and magnetic alignment

机译:自组装晕苯纳米纤维:光学波导效应和磁对齐

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摘要

To fabricate organic nanofibers that function as active optical waveguides with semiconductor properties, a facile procedure was developed to grow single crystalline nanofibers via n-n stacking of the polycyclic aromatic molecule, coronene, through solution evaporation on a substrate. The fabricated nanofibers with millimeter-scale lengths have well-defined shapes, smooth surfaces, and low-defect structures. The nanofibers are demonstrated to function as efficient active waveguides that propagate their fluorescence (FL) along the fiber axis over their entire length. We further demonstrate that the nanofibers can be highly aligned on the substrate when solution evaporation is conducted in a magnetic field of 12 T. The mechanism of the magnetic alignment can be elucidated by considering the anisotropy of the diamagnetic susceptibility of a single coronene molecule and the crystal structure of a nanofiber. Owing to the high degree of alignment, the nanofibers rarely cross each other, allowing for measurement of the waveguiding properties of single isolated nanofibers. The nanofibers propagate their FL of λ >500 rim with a low propagation loss of 0-3 dB per 100 urn, indicating that the nanofibers function as sub-wavelength scale, low-loss waveguides. Thus, they are promising building blocks for miniaturized optoelectronic circuits.
机译:制造有机功能纳米纤维积极与半导体光波导属性,一个灵巧的过程开发通过n n单结晶生长纳米纤维堆积的多环芳香分子,蒸发在晕苯,通过解决方案衬底。毫米级的长度有定义良好的形状、光滑的表面和低次品结构。函数作为波导,有效活跃沿光纤传播他们的荧光(FL)轴在其整个长度。表明纳米纤维可以高度对齐在衬底的解决方案蒸发的磁场中进行12 t磁定位的机制被考虑到各向异性的阐明单一的抗磁磁化率晕苯分子和晶体结构纳米纤维。纳米纤维很少互相交叉,允许的波导特性的测量单个孤立的纳米纤维。传播的FLλ> 500 rim低传播损耗的0 - 3 dB每100缸,表明纳米纤维的功能sub-wavelength规模、低损耗波导。他们是有前途的构建块小型光电回路。

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