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首页> 外文期刊>Nanotechnology >S/Mo ratio and petal size controlled MoS2 nanoflowers with low temperature metal organic chemical vapor deposition and their application in solar cells
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S/Mo ratio and petal size controlled MoS2 nanoflowers with low temperature metal organic chemical vapor deposition and their application in solar cells

机译:S / MO比和花瓣尺寸控制MOS2纳米割,具有低温金属有机化学气相沉积及其在太阳能电池中的应用

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摘要

Vertically aligned two-dimensional (2D) molybdenum disulfide nanoflowers (MoS2 NFs) have drawn considerable attention as a novel functional material with potential for next-generation applications owing to their inherently distinctive structure and extraordinary properties. We report a simple metal organic chemical vapor deposition (MOCVD) method that can grow high crystal quality, large-scale and highly homogeneous MoS2 NFs through precisely controlling the partial pressure ratio of H2S reaction gas, P-SR, to Mo(CO)(6) precursor, P-MoP, at a substrate temperature of 250 degrees C. We investigate microscopically and spectroscopically that the S/Mo ratio, optical properties and orientation of the grown MoS2 NFs can be controlled by adjusting the partial pressure ratio, P-SR/P-MoP. It is also shown that the low temperature MOCVD (LT-MOCVD) growth method can regulate the petal size of MoS2 NFs through the growth time, thereby controlling photoluminescence intensity. More importantly, the MoS2 NFs/GaAs heterojunction flexible solar cell exhibiting a power conversion efficiency of similar to 1.3% under air mass 1.5 G illumination demonstrates the utility of the LT-MOCVD method that enables the direct growth of MoS2 NFs on the flexible devices. Our work can pave the way for practical, easy-to-fabricate 2D materials integrated flexible devices in optical and photonic applications.
机译:垂直排列的二维二硫化钼纳米花(MoS2-NFs)由于其独特的结构和优异的性能,作为一种具有下一代应用潜力的新型功能材料,已经引起了广泛关注。我们报道了一种简单的金属有机化学气相沉积(MOCVD)方法,该方法可以通过精确控制H2S反应气体P-SR与Mo(CO)(6)前驱体P-MoP的分压比,在250℃的衬底温度下生长高质量、大规模和高度均匀的MoS2 NFs。我们从显微镜和光谱角度研究了S/Mo比,通过调节分压比P-SR/P-MoP,可以控制生长的MoS2-NFs的光学性质和取向。低温MOCVD(LT-MOCVD)生长方法可以通过生长时间调节MoS2 NFs的花瓣大小,从而控制光致发光强度。更重要的是,MoS2 NFs/GaAs异质结柔性太阳能电池在空气质量为1.5 G的照明下显示出类似于1.3%的功率转换效率,证明了LT-MOCVD方法的实用性,该方法能够在柔性器件上直接生长MoS2 NFs。我们的工作可以为在光学和光子应用中实现实用、易于制造的2D材料集成柔性器件铺平道路。

著录项

  • 来源
    《Nanotechnology》 |2021年第19期|共9页
  • 作者单位

    Korea Res Inst Stand &

    Sci Adv Instrumentat Inst Daejeon 34113 South Korea;

    Korea Res Inst Stand &

    Sci Adv Instrumentat Inst Daejeon 34113 South Korea;

    Korea Res Inst Stand &

    Sci Interdisciplinary Mat Measurement Inst Daejeon 34113 South Korea;

    Korea Res Inst Stand &

    Sci Interdisciplinary Mat Measurement Inst Daejeon 34113 South Korea;

    Korea Res Inst Stand &

    Sci Adv Instrumentat Inst Daejeon 34113 South Korea;

    Korea Res Inst Stand &

    Sci Adv Instrumentat Inst Daejeon 34113 South Korea;

    Korea Res Inst Stand &

    Sci Interdisciplinary Mat Measurement Inst Daejeon 34113 South Korea;

    US Air Force Mat &

    Mfg Directorate Res Lab Wright Patterson AFB OH 45433 USA;

    Korea Res Inst Stand &

    Sci Adv Instrumentat Inst Daejeon 34113 South Korea;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料;
  • 关键词

    low-temperature MOCVD; vertically aligned MoS2; MoS2 nanoflower; MoS2; GaAs heterojunction solar cell;

    机译:低温MOCVD;垂直排列的MoS2;MoS2纳米花;MoS2;砷化镓异质结太阳电池;

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