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Conductivity of PEDOT:PSS on Spin-Coated and Drop Cast Nanofibrillar Cellulose Thin Films

机译:PEDOT:PSS在旋涂和滴铸纳米原纤纤维素薄膜上的电导率

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摘要

Aqueous dispersion of conductive polymer poly(3,4-ethylenedioxythiophene)–poly(styrenesulfonate) (PEDOT:PSS) was deposited on spin-coated and drop cast nanofibrillar cellulose (NFC)–glycerol (G) matrix on a glass substrate. A thin glycerol film was utilized on plasma-treated glass substrate to provide adequate adhesion for the NFC-glycerol (NFC-G) film. The effects of annealing temperature, the coating method of NFC-G, and the coating time intervals on the electrical performance of the PEDOT:PSS were characterized. PEDOT:PSS on drop cast NFC-G resulted in 3 orders of magnitude increase in the electrical conductivity compared to reference PEDOT:PSS film on a reference glass substrate, whereas the optical transmission was only slightly decreased. The results point out the importance of the interaction between the PEDOT:PSS and the NFC-G for the electrical and barrier properties for thin film electronics applications.
机译:导电聚合物聚(3,4-乙撑二氧噻吩)-聚(苯乙烯磺酸盐)(PEDOT:PSS)的水分散体沉积在玻璃基板上的旋涂和滴铸纳米原纤维纤维素(NFC)-甘油(G)基质上。在经等离子体处理的玻璃基板上使用甘油薄膜,以为NFC-甘油(NFC-G)薄膜提供足够的附着力。表征了退火温度,NFC-G的涂覆方法和涂覆时间间隔对PEDOT:PSS电气性能的影响。与参考玻璃基板上的参考PEDOT:PSS膜相比,滴铸NFC-G上的PEDOT:PSS导致电导率增加3个数量级,而光透射率仅略有下降。结果指出了PEDOT:PSS和NFC-G之间相互作用对于薄膜电子应用的电学和阻挡性能的重要性。

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