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Thermal and mechanical properties of AlN/BN-filled PVDF composite for solar cell backsheet application

机译:用于太阳能电池背板的AlN / BN填充PVDF复合材料的热和机械性能

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摘要

Heat dissipation is an important factor in maintaining solar cell module efficiency and in preventing thermal degradation of polymers within the cells. Aluminum nitride (AIN) and boron nitride (BN), surface-modified via a silane coupling agent, were used as a thermal conducting filler in conjunction with a poly(vinylidene fluoride) (PVDF) matrix with high thermal conductivity for the backsheet of the solar cell. The composites with 70 wt% and a 2:8 AlN/BN ratio showed a maximum thermal conductivity of 5.85 W m(-1) K-1), which is 31 times larger than a pure PVDF matrix. The storage modulus was almost comparable to that of polyethylene terephthalate (PET), which is normally used to provide hardness for the PVDF. The water swelling ratio was reduced by addition of the filler, and the thermal and mechanical properties after swelling and drying were not degraded. The fabricated ceramic filler contained PVDF composite, satisfying the thermal and mechanical properties and long-term stability for a mono-layer structure for the backsheet of a solar cell. (C) 2014 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:散热是维持太阳能电池模块效率和防止电池内聚合物热降解的重要因素。经硅烷偶联剂表面改性的氮化铝(AIN)和氮化硼(BN)与导热系数高的聚偏二氟乙烯(PVDF)基质一起用作导热填料,用于底盘太阳能电池。具有70 wt%的AlN / BN比为2:8的复合材料显示最大热导率为5.85 W m(-1)K-1),比纯PVDF基质大31倍。储能模量几乎与聚对苯二甲酸乙二醇酯(PET)相当,后者通常用于为PVDF提供硬度。通过添加填料降低水溶胀率,并且溶胀和干燥后的热和机械性能不会降低。所制造的陶瓷填料包含PVDF复合材料,满足了太阳能电池背板的单层结构的热和机械性能以及长期稳定性。 (C)2014 Elsevier Ltd和Techna Group S.r.l.版权所有。

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