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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >The effect of 1D-and 2D-polymorphs on organic single-crystal optoelectronic devices: lasers and field effect transistors
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The effect of 1D-and 2D-polymorphs on organic single-crystal optoelectronic devices: lasers and field effect transistors

机译:1D-and 2d-多晶型物对有机单晶光电器件的影响:激光器和场效应晶体管

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Rational design and fabrication of organic microcrystal polymorphs with controlled molecular-stacking arrangements provides an effective way to optimize the optical and electronic properties, but remains challenging owing to weak van der Waals' intermolecular interactions associated with the kinetic process of crystal growth. In this paper, we synthesized a novel compound, 1,4-dimethoxy-2,5-di[bithiophenestyryl]benzene (TPDSB), which combines the high optical-gain of the oligomeric phenylene vinylene (OM core-moiety with enhanced charge transportation offered by bithiophene end-groups. Controlled fabrication of one-dimensional microwires (1D-MWs) and two-dimensional microdisks (2D-MDs) was achieved by controlling the growth temperature: 1D-MWs at 30 degrees C as a kinetically favored morphology and 2D-MDs at 2 degrees C as a thermodynamically stable product. We found that though both 1D-MWs and 2D-MDs belong to the monoclinic phase, their different molecular packing arrangements caused by different molecular conformations result in distinctly different optical and electrical properties. In particular, well-faceted 1D-MWs and 2D-MDs can function as yellow-emissive Fabry-Perot (FP) and red-emissive whispering-gallery-mode (WGM) microlasers, respectively. Furthermore, single-crystal data reveal that TPDSB molecules adopt a planar conformation in 1D-MWs with relatively loose molecular-packing into rolled Tc-stacks, while twist molecules in 2D-MDs exhibit tight molecular-packing into slipped pi-stacks. This makes 2D-MDs have a higher PL quantum yield (phi), a lower lasing threshold and a higher carrier mobility than 1D-MWs. Our results demonstrated that these easily solution-processed organic microcrystal polymorphs might be optimized on the way to realizing electrically driven organic lasers.
机译:具有受控分子堆叠布置的有机微晶多晶型物的合理的设计和制备提供了优化光学和电子性质的有效方法,而是由于与晶体生长的动力学过程相关的范德华的分子间相互作用弱。在本文中,我们合成了一种新型化合物,1,4-二甲氧基-2,5-DI苯(TPDSB),其结合了低聚苯基乙烯基的高光学增益(OM核心部分,具有增强的电荷运输由二硫代蛋白末端组提供。通过控制30摄氏度的生长温度:1d-Mws作为动力学和动力学的形态和2D-MDS在2摄氏度下作为热力学稳定的产品。我们发现,虽然1D-MWS和2D-MDS,但是它们的不同分子构象引起的不同的分子包装布置导致不同的光学和电性能。特别地,刻面的1D-MW和2D-MD可以分别用作黄色发光法布里 - 珀罗(FP)和红发窃窃私语 - 画廊 - 模式(WGM)微溶解器。此外,单晶数据显示TPDSB痣Cules在1d-Mws中采用平面构象,具有相对松散的分子包装成卷轧堆,而2D-MD中的捻度分子表现出紧密的分子包装进入滑动的PI叠层。这使得2D-MD具有更高的PL量子产率(PHI),更低的激光阈值和比1D-MWS更高的载流子迁移率。我们的结果表明,这些易于解决的有机微晶多晶硅可以在实现电动有机激光器的方式上进行优化。

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    Capital Normal Univ Dept Chem Beijing Key Lab Opt Mat &

    Photon Devices Beijing 100048 Peoples R China;

    Capital Normal Univ Dept Chem Beijing Key Lab Opt Mat &

    Photon Devices Beijing 100048 Peoples R China;

    Capital Normal Univ Dept Chem Beijing Key Lab Opt Mat &

    Photon Devices Beijing 100048 Peoples R China;

    Capital Normal Univ Dept Chem Beijing Key Lab Opt Mat &

    Photon Devices Beijing 100048 Peoples R China;

    Capital Normal Univ Dept Chem Beijing Key Lab Opt Mat &

    Photon Devices Beijing 100048 Peoples R China;

    Capital Normal Univ Dept Chem Beijing Key Lab Opt Mat &

    Photon Devices Beijing 100048 Peoples R China;

    Capital Normal Univ Dept Chem Beijing Key Lab Opt Mat &

    Photon Devices Beijing 100048 Peoples R China;

    Capital Normal Univ Dept Chem Beijing Key Lab Opt Mat &

    Photon Devices Beijing 100048 Peoples R China;

    Capital Normal Univ Dept Chem Beijing Key Lab Opt Mat &

    Photon Devices Beijing 100048 Peoples R China;

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  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学 ;
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