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Sequencing and Welding of Molecular Single-Crystal Optical Waveguides

机译:分子单晶光波导的测序和焊接

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摘要

Molecular crystals are promising anisotropic optical transducing media for next-generation optoelectronic microdevices that will be capable of secure transduction of information and impervious to external electromagnetic interference. However, their full potential has not been explored yet due to their poor processability, low mechanical compliance, pronounced brittleness and high proneness to cracking that often result in irrecoverable damage. These issues are detrimental to their ability to transduce light. Here, a novel strategy is presented based on 3D epitaxial crystal growth of organic/inorganic crystals based on charge-assisted hydrogen bonds that can be used to efficiently weld broken molecular single-crystalline optical waveguides and restore their light-transducing capability. This approach can also be applied to prepare asymmetric multidomain crystalline heterostructures starting from isostructural molecular tectons, resulting in novel opto/electro/mechanical functionalities in the hybrid materials. It also removes an important obstacle toward wider application of molecular crystals in the next-generation optoelectronics.
机译:分子晶体是对下一代光电子微生物的各向异性光学转换介质,其能够能够安全地转换信息和不受外部电磁干扰的影响。然而,由于它们的可加工性,低机械顺应性,发明细的脆性和裂缝的高通话性,它们尚未探讨它们的全部潜力尚未探讨。通常会导致无法恢复的损坏。这些问题对他们的光明的能力有害。这里,基于基于电荷辅助氢键的有机/无机晶体的3D外延晶体生长来介绍一种新的策略,该电荷辅助氢键可用于有效地焊接破碎的分子单晶光波导并恢复它们的光转换能力。该方法也可以应用于制备非对称多域结晶异质结构,从IsoStr发生器分子构胞胎开始,导致混合材料中的新型光学/电/机械官能团。它还除去了在下一代光电子中更广泛地应用分子晶体的重要障碍。

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