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首页> 外文期刊>RSC Advances >Effects of added thiol ligand structure on aggregation of non-aqueous ZnO dispersions and morphology of spin-coated films
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Effects of added thiol ligand structure on aggregation of non-aqueous ZnO dispersions and morphology of spin-coated films

机译:添加硫醇配体结构对旋涂膜的非水ZnO分散体聚集的影响

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The ability to control the morphology of spin-coated semiconducting nanocrystal films using solution based methods is potentially important for optoelectronic device applications. In this study we sought to establish relationships between added bifunctional thiol ligand structure, triggered nanocrystal aggregation and spin-coated nanocrystal film morphology using ZnO nanocrystals. The latter nanocrystals were studied because they do not rely on adsorbed long-chain ligands for dispersion stability, which simplifies the analysis, and have potential application in solar cells. The dithiol ligands used in this study were 1,2-ethanedithiol, 1,2-benzenedithiol and 1,4-benzenedithiol. Dispersion stability was assessed visually and using turbidity measurements. A colloid stability phase diagram for ZnO/1,2-ethanedithiol dispersions in chlorobenzene was constructed and the ability of 1,2-ethanedithiol and 1,2-benzenedithiol to trigger dispersion aggregation was compared. The morphology of spin-coated nanocrystal films was investigated using optical microscopy, SEM and TEM. The data show that added 1,2-benzenedithiol was far more effective at triggering aggregation than 1,2-ethanedithiol and this effect was attributed to stronger inter-nanocrystal linkages. Moreover, spin-coated ZnO/1,2-benzenedithiol films strongly scattered light in the visible region which was attributed to the formation of polydisperse sub-micrometre aggregates. A mechanism for ligand triggered aggregation of dispersed ZnO nanocrystals was proposed. We propose design rules for bifunctional thiol ligand selection for controlling triggered aggregation and achieving enhanced light scattering of ZnO nanocrystal films. The latter may enable simpler processing of efficient ZnO photoelectrodes for dye sensitised solar cells.
机译:使用基于溶液的方法控制旋涂半导体纳米晶体膜的形态的能力对于光电器件应用可能是重要的。在这项研究中,我们试图建立在添加的双官能硫醇配体结构之间的关系,使用ZnO纳米晶体触发纳米晶体聚集和旋涂的纳米晶体膜形态。研究了后一种纳米晶体,因为它们不依赖于吸附的长链配体进行分散稳定性,这简化了分析,并且在太阳能电池中具有潜在的应用。本研究中使用的二硫醇配体为1,2-乙酸二醇,1,2-苯二硫醇和1,4-苯二硫醇。视觉评估分散稳定性,并使用浊度测量。 [氯苯中ZnO / 1,2-乙二醇分散体的胶体稳定性相图是构建的,比较了1,2-乙二醇和1,2-苯二硫醇引发分散聚集的能力。使用光学显微镜,SEM和TEM研究了旋涂纳米晶体膜的形态。添加1,2-苯二硫醇的数据显示在触发聚集中比1,2-乙二醇更有效,并且这种效果归因于较强的纳米晶体键。此外,旋涂的ZnO / 1,2-苯二硫醇薄膜在可见区域中强烈散射光,其归因于形成多分散亚微米聚集体。提出了一种用于分散ZnO纳米晶体的配体引发聚集的机制。我们提出了用于控制触发聚集的双官能硫醇配体选择的设计规则,实现ZnO纳米晶体膜的增强光散射。后者可以更简单地处理染料敏化太阳能电池的有效ZnO光电子的处理。

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  • 来源
    《RSC Advances 》 |2015年第24期| 共13页
  • 作者单位

    Univ Manchester Sch Mat Polymer Sci &

    Technol Grp Manchester M9 13PL Lancs England;

    Univ Manchester Sch Mat Polymer Sci &

    Technol Grp Manchester M9 13PL Lancs England;

    Univ Manchester Sch Mat Polymer Sci &

    Technol Grp Manchester M9 13PL Lancs England;

    Univ Manchester Sch Mat Polymer Sci &

    Technol Grp Manchester M9 13PL Lancs England;

    Univ Manchester Sch Mat Polymer Sci &

    Technol Grp Manchester M9 13PL Lancs England;

    Univ Manchester Sch Mat Polymer Sci &

    Technol Grp Manchester M9 13PL Lancs England;

    Univ Manchester Sch Mat Polymer Sci &

    Technol Grp Manchester M9 13PL Lancs England;

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  • 正文语种 eng
  • 中图分类 化学 ;
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