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首页> 外文期刊>Journal of Materials Science >Affixing poly(methyl methacrylate-co-acrylic acid) nanospheres with trimethoxyvinylsilane on silicon solar module to enhance its power conversion efficiency
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Affixing poly(methyl methacrylate-co-acrylic acid) nanospheres with trimethoxyvinylsilane on silicon solar module to enhance its power conversion efficiency

机译:用三甲氧基乙烯基硅烷粘合聚(甲基丙烯酸甲酯 - 共丙烯酸)纳米球,以提高其功率转换效率

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摘要

Poly(methyl methacrylate-co-acrylic acid) [P(MMA-co-AA)] incorporated with 0-9 wt% of trimethoxyvinylsilane (TMVS) has been studied to investigate the effect of TMVS on the adhesion properties of P(MMA-co-AA) nanospheres coated on silicon substrate as well as on the power conversion efficiency (PCE) of silicon solar module coated with the polymer nanospheres. The incorporation of 7 and 9 wt% of TMVS into the copolymer has been found to render the copolymer stronger adhesion to glass substrate than the samples with lower amount of TMVS in them. The coating of the P(MMA-co-AA) nanospheres on the glass surface of solar module increases the light harvesting efficiency by serving as an anti-reflective layer. Solar module coated with an array of P(MMA-co-AA) nanospheres with 7 wt% of TMVS yielded the highest PCE enhancement of 98% under the illumination of an AM1.5 solar simulator. The natural weathering results indicate that the copolymer with 7% of TMVS was able to withstand prolonged natural weathering exposure and remained reasonably effective in PCE enhancement up to 130 days of outdoor exposure. This study demonstrates a cost-effective technique to bind [P(MMA-co-AA)] nanospheres onto the silicon surface of solar module via siloxane linkages and thus increases the PCE of the solar module effectively. The T-g of the copolymer increased linearly from 110.31 to 118.42 degrees C when 0-9 wt% of TMVS was added into it. Thermogravimetry results indicate that the incorporation of TMVS does not give any significant effect on the T-d of the copolymer, which occurs at about 390 degrees C.
机译:研究了掺入0-9 wt%三甲氧基乙烯基硅烷(TMVS)的聚(甲基丙烯酸甲酯-丙烯酸共聚物)[P(MMA-co-AA)]对硅衬底上涂覆的P(MMA-co-AA)纳米球的粘附性能以及对涂覆聚合物纳米球的硅太阳能组件的功率转换效率(PCE)的影响。研究发现,与TMV含量较低的样品相比,在共聚物中加入7%和9%的TMV,使共聚物对玻璃基材的附着力更强。在太阳能组件的玻璃表面涂覆P(MMA-co-AA)纳米球,作为抗反射层,提高了采光效率。在AM1照明下,涂有含有7 wt%TMV的P(MMA-co-AA)纳米球阵列的太阳能组件产生了98%的最高PCE增强。5.太阳模拟器。自然风化结果表明,含有7%TMV的共聚物能够经受长期的自然风化暴露,并且在户外暴露130天的情况下仍能合理有效地增强PCE。本研究证明了一种经济高效的技术,通过硅氧烷键将[P(MMA-co-AA)]纳米球结合到太阳能组件的硅表面,从而有效地提高太阳能组件的PCE。当添加0-9 wt%的TMV时,共聚物的T-g从110.31℃线性增加到118.42℃。热重分析结果表明,TMV的加入不会对共聚物的T-d产生任何显著影响,其发生在约390℃时。

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  • 来源
    《Journal of Materials Science 》 |2021年第21期| 共19页
  • 作者单位

    Univ Tunku Abdul Rahman Fac Sci Jalan Univ Kampar 31900 Perak Malaysia;

    Univ Tunku Abdul Rahman Fac Sci Jalan Univ Kampar 31900 Perak Malaysia;

    Univ Tunku Abdul Rahman Fac Sci Jalan Univ Kampar 31900 Perak Malaysia;

    Wawasan Open Univ Sch Sci &

    Technol 54 Jalan Sultan Ahmad Shah George Town 10050 Malaysia;

    Univ Tunku Abdul Rahman Fac Sci Jalan Univ Kampar 31900 Perak Malaysia;

    Natl Univ Malaysia UKM Solar Energy Res Inst Ground Floor Res Complex Bangi 43650 Selangor Malaysia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学 ;
  • 关键词

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