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首页> 外文期刊>Journal of Applied Polymer Science >Polypyrrole/MWCNT-gr-PSSA composite for flexible and highly conductive transparent film
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Polypyrrole/MWCNT-gr-PSSA composite for flexible and highly conductive transparent film

机译:聚吡咯/ MWCNT-gr-PSSA复合材料,用于柔性高导电透明膜

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This study compares the properties of a highly conductive polymer based on polypyrrole and multiwall carbon nanotubes (MWCNTs) grafted with poly (styrenesulfonic acid) (PPy/MWCNT-gr-PSSA) prepared for flexible indium tin oxide-free organic solar cell (OSC) anode with those of PH500 poly(3,4-ethylenedioxythiophene): poly(styrenesulfonate) (PEDOT: PSS) in various solvents. Hydrophilic poly(styrenesulfonic acid) (PSSA) was grafted on the MWCNT surfaces to improve dispersion of the MWCNT in an aqueous solution. MWCNT-gr-PSSA was added because MWCNT acts as a conductive additive and a template for the polymerization of PPy. Polymerization yields increased as the amount of MWCNT-gr-PSSA increased and reached a maximum when 50% of MWCNT-gr-PSSA was added. The conductivity of PPy/MWCNT-gr-PSSA composite was further improved and the value reached ~ 152 S/cm with the addition of a toluenesulfonic acid (TSA)/HCl dopant mixture. To prepare a flexible OSC anode, PPy/MWCNT-gr-PSSA dissolved in solvent mixture, was coated onto a polyethylene terephthalate (PET) substrate. PPy/MWCNT-gr-PSSA was dissolved in a mixture of solvents including DMSO, NMP, EG, DEG, and glycerol of a high boiling point that was spin coated onto the PET, then annealed for 30 min at various temperatures. The conductivity of PPy/MWCNT-gr-PSSA was further enhanced with solvent treatment and annealing at temperature ranges of 100-175°C. Under optimum conditions, the conductivity and transmittance of PPy/MWCNT-gr-PSSA on PET reached 602 S/cm and 84% at 550 nm, respectively. In addition, it was confirmed that the energy level and mechanical strength of the film were suitable for OSC electrode use.
机译:这项研究比较了基于聚吡咯和多壁碳纳米管(MWCNT)的高导电聚合物的性能,该聚合物接枝了聚苯乙烯磺酸(PPy / MWCNT-gr-PSSA),用于制备无铟锡氧化物有机太阳能电池(OSC)阳极与PH500在各种溶剂中的聚(3,4-乙撑二氧噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS)的阳极。将亲水性聚(苯乙烯磺酸)(PSSA)接枝到MWCNT表面上,以改善MWCNT在水溶液中的分散性。加入MWCNT-gr-PSSA是因为MWCNT充当导电添加剂和PPy聚合的模板。聚合收率随着MWCNT-gr-PSSA量的增加而增加,并在添加50%MWCNT-gr-PSSA时达到最大值。加入甲苯磺酸(TSA)/ HCl掺杂剂后,PPy / MWCNT-gr-PSSA复合材料的电导率进一步提高,达到〜152 S / cm。为了制备柔性OSC阳极,将溶解在溶剂混合物中的PPy / MWCNT-gr-PSSA涂覆到聚对苯二甲酸乙二醇酯(PET)基底上。将PPy / MWCNT-gr-PSSA溶解在包括DMSO,NMP,EG,DEG和高沸点甘油的溶剂混合物中,然后将其旋涂到PET上,然后在各种温度下退火30分钟。 PPy / MWCNT-gr-PSSA的电导率通​​过溶剂处理和100-175°C的退火温度进一步提高。在最佳条件下,PPy / MWCNT-gr-PSSA在PET上的电导率和透射率在550 nm处分别达到602 S / cm和84%。另外,已确认膜的能级和机械强度适合于OSC电极的使用。

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