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Metal Nanoparticle-Decorated Two-Dimensional Molybdenum Sulfide for Plasmonic-Enhanced Polymer Photovoltaic Devices

机译:金属纳米粒子装饰的二维硫化钼用于等离子增强聚合物光伏器件

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摘要

Atomically thin two-dimensional (2D) transition metal dichalcogenides have also attracted immense interest because they exhibit appealing electronic, optical and mechanical properties. In this work, we prepared gold nanoparticle-decorated molybdenum sulfide (AuNP@MoS2) through a simple spontaneous redox reaction. Transmission electron microscopy, UV-Vis spectroscopy, and Raman spectroscopy were used to characterize the properties of the AuNP@MoS2 nanomaterials. Then we employed such nanocomposites as the cathode buffer layers of organic photovoltaic devices (OPVs) to trigger surface plasmonic resonance, leading to noticeable enhancements in overall device efficiencies. We attribute the primary origin of the improvement in device performance to local field enhancement induced by the effects of localized surface plasmonic resonance. Our results suggest that the metal nanoparticle-decorated two-dimensional materials appear to have great potential for use in high-performance OPVs.
机译:原子薄的二维(2D)过渡金属二硫化二氢也吸引了巨大的兴趣,因为它们具有吸引人的电子,光学和机械性能。在这项工作中,我们通过简单的自发氧化还原反应制备了纳米金修饰的硫化钼(AuNP @ MoS2)。透射电子显微镜,紫外可见光谱和拉曼光谱被用来表征AuNP @ MoS2纳米材料的性能。然后,我们将这种纳米复合材料用作有机光伏器件(OPV)的阴极缓冲层,以触发表面等离子体共振,从而导致整体器件效率显着提高。我们将设备性能改善的主要原因归因于局部表面等离子体共振的影响引起的局部场增强。我们的结果表明,用金属纳米粒子装饰的二维材料似乎在高性能OPV中具有巨大的潜力。

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