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Surface structure, optoelectronic properties and charge transport in ZnO nanocrystal/MDMO-PPV multilayer films

机译:ZnO纳米晶体/ MDMO-PPV多层膜中的表面结构,光电性能和电荷输送

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摘要

Blends of semiconducting nanocrystals and conjugated polymers continue to attract major research interest because of their potential applications in optoelectronic devices, such as solar cells, photodetectors and light-emitting diodes. In this study we investigate the surface structure, morphological and optoelectronic properties of multilayer films constructed from ZnO nanocrystals (NCs) and poly[2-methoxy-5-(3',7'-dimethyloctyloxy)-1,4-phenylenevinylene] (MDMO-PPV). The effects of layer number and ZnO concentration (C-ZnO) used on the multilayer film properties are investigated. An optimised solvent blend enabled well-controlled layers to be sequentially spin coated and the construction of multilayer films containing six ZnO NC (Z) and MDMO-PPV (M) layers (denoted as (ZM)(6)). Contact angle data showed a strong dependence on C-ZnO and indicated distinct differences in the coverage of MDMO-PPV by the ZnO NCs. UV-visible spectroscopy showed that the MDMO-PPV absorption increased linearly with the number of layers in the films and demonstrates highly tuneable light absorption. Photoluminescence spectra showed reversible quenching as well as a surprising red-shift of the MDMO-PPV emission peak. Solar cells were constructed to probe vertical photo-generated charge transport. The measurements showed that (ZM)(6) devices prepared using C-ZnO = 14.0 mg mL(-1) had a remarkably high open circuit voltage of similar to 800 mV. The device power conversion efficiency was similar to that of a control bilayer device prepared using a much thicker MDMO-PPV layer. The results of this study provide insight into the structure-optoelectronic property relationships of new semiconducting multilayer films which should also apply to other semiconducting NC/polymer combinations.
机译:由于它们在光电器件,诸如太阳能电池,光电探测器和发光二极管的光电器件中的潜在应用,半导体纳米晶体和共轭聚合物的共混物继续吸引主要的研究兴趣。在该研究中,我们研究了由ZnO纳米晶体(NCS)构成的多层膜的表面结构,形态学和光电性能和聚[2-甲氧基-5-(3',7'-二甲基辛氧基)-1,4-苯基乙烯基](MDMO) -PPV)。研究了在多层膜性质上使用的层数和ZnO浓度(C-ZnO)的影响。优化的溶剂共混物使能受控层的井旋涂覆,含有六个ZnOn(Z)和MDMO-PPV(M)层的多层膜的构造(表示为(ZM)(6))。接触角数据显示出对C-ZnO的强烈依赖性,并表明ZnO NCS的MDMO-PPV覆盖范围明显差异。 UV可见光光谱表明,MDMO-PPV吸收与薄膜中的层数线性增加,并证明了高度可调的光吸收。光致发光光谱显示可逆淬火以及MDMO-PPV发射峰的令人惊讶的红移。构建太阳能电池以探测垂直光产生的电荷传输。测量结果表明,使用C-ZnO = 14.0mg mL(-1)制备的(ZM)(6)器件具有相似的高开路电压与800mV相似。器件电力转换效率类似于使用更厚的MDMO-PPV层制备的控制双层器件的效率。本研究的结果提供了对新型半导体多层膜的结构 - 光电性质的洞察力,所述多层膜也应该适用于其他半导体NC /聚合物组合。

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    Univ Manchester Sch Mat MSS Tower Manchester M13 9PL Lancs England;

    Univ Manchester Sch Mat MSS Tower Manchester M13 9PL Lancs England;

    Univ Manchester Sch Mat MSS Tower Manchester M13 9PL Lancs England;

    Univ Manchester Sch Mat MSS Tower Manchester M13 9PL Lancs England;

    Univ Manchester Sch Mat MSS Tower Manchester M13 9PL Lancs England;

    Univ Manchester Photon Sci Inst Alan Turing Bldg Oxford Rd Manchester M13 9PL Lancs England;

    Univ Manchester Sch Mat MSS Tower Manchester M13 9PL Lancs England;

    Univ Manchester Sch Mat MSS Tower Manchester M13 9PL Lancs England;

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  • 正文语种 eng
  • 中图分类 物理学;化学;
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