首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >ANALYSIS AND CHARACTERIZATION OF SURFACE PLASMON ENHANCEMENT OF LIGHT ABSORPTION IN ORGANIC SOLAR CELLS BY THE TRANSFER MATRIX METHOD
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ANALYSIS AND CHARACTERIZATION OF SURFACE PLASMON ENHANCEMENT OF LIGHT ABSORPTION IN ORGANIC SOLAR CELLS BY THE TRANSFER MATRIX METHOD

机译:转移矩阵法测定有机太阳能电池光吸收表面等离子体的分析与表征

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Surface plasmons enhanced light absorption in organic solar cells based on a photoactive poly(2-methoxyl-5-(2-ethyl-hexyloxy)-1.4-phenylenevinylene):(6.6)-phenyl-C61-butyric-acid-methylester (MEH-PPV:PCBM), is studied by a computational model based on the transfer matrix method (TMM). Two physical situation with and without the bulk heterojunction film are considered and modeled on a 2D array of silver nanoparticles with a diameter of 40 nm embedded in a 50-nm-thick layer. The numerical simulation results that include optical properties in the wave length range of 350 and 750 nm, present qualitative and quantitative good agreement with previous results obtained by Duche et al (2009) in both conditions. Optical absorption results for incident light at an oblique angle of incidence are also obtained, with the purpose of determining the effect of the angle of incidence on the absorption properties.
机译:表面等离子体基于光活性聚(2-甲氧基-5-(2-乙基 - 己氧基)-1.4-苯基乙烯基):( 6) - 苯基-C61-丁基甲基酯(MEH-)的表面等离子体增强了有机太阳能电池的光吸收PPV:PCBM)由基于传输矩阵法(TMM)的计算模型研究。具有和不具有本体异质结膜的两个物理情况,并在2D纳米颗粒上建模,其直径为40nm,嵌入50nm厚的层中。包括350和750nm波长范围内的光学性质的数值模拟结果,与在这两种条件下通过Duche等人(2009)获得的先前结果存在定性和定量良好的一致性。还获得了倾斜入射角入射光的光学吸收结果,目的是确定入射角对吸收性能的影响。

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