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Contacts on polyester textile as a flexible substrate for solar cells

机译:聚酯织物上的触点作为太阳能电池的柔性基材

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In the present work, the authors have studied conductive surfaces on polyester fabrics by using two types of commercially available conductive polymers; polyaniline and poly (3,4-ethylenedioxythiophene)-poly (styrenesulphonate) (PEDOT: PSS) with 100 nm aluminium thin film evaporated on top of the polymer so the fabric becomes a conductive substrate for inorganic thin film solar cells. Conductive polymer surfaces on woven polyester fabrics were obtained by knife-over-table coating technique. Surface resistivities for polyaniline and PEDOT: PSS coated fabrics were measured and found in the range of 400 r7; 103 and 1 r7; 103 :9;/ɚ1;, respectively. Thermal stability tests were carried out to evaluate the effect of specific periods of heal treatment at different elevated temperatures on resistance of polymer coated conducting textiles. PEDOT: PSS exhibited better stability than panipol. According to long term tests, PEDOT: PSS coated samples showed improvement in conductivity over 3 days whereas panipol showed the opposite. Transmission Line Model tests were performed to measure aluminium/polymer contact resistances which were found to be 120 r7; 103 :9; for polyaniline and about 46.3 :9; for PEDOT: PSS. Mechanical bending tests for aluminium/ PEDOT: PSS/fabric samples showed that the polymer can maintain the conductivity of samples by bridging micro-cracks in the metal film.
机译:在目前的工作中,作者已经通过使用两种类型的市售导电聚合物研究了聚酯织物上的导电表面。聚苯胺和聚(3,4-乙撑二氧噻吩)-聚(苯乙烯磺酸盐)(PEDOT:PSS),其中100 nm铝薄膜蒸发在聚合物顶部,因此该织物成为无机薄膜太阳能电池的导电基材。机织聚酯织物上的导电聚合物表面是通过台式刮刀涂布技术获得的。聚苯胺和PEDOT的表面电阻率:测量PSS涂层织物的电阻率范围为400 r7; 10 3 和1 r7; 10 3 :9; /ɚ1;。进行了热稳定性测试,以评估在不同的高温下特定时间的愈合处理对涂有聚合物的导电纺织品的电阻的影响。 PEDOT:PSS表现出比panipol更好的稳定性。根据长期测试,PEDOT:PSS涂层样品在3天内显示出电导率改善,而panipol显示相反。进行传输线模型测试以测量铝/聚合物的接触电阻,发现为120 r7; 10 3 :9;对于聚苯胺和约46.3:9;对于PEDOT:PSS。铝/ PEDOT的机械弯曲测试:PSS /织物样品表明,聚合物可以通过桥接金属膜中的微裂纹来保持样品的电导率。

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