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Highly stable organic-inorganic junction composed of hydrogenated titania nanotubes infiltrated by a conducting polymer

机译:由导电聚合物渗透的氢化二氧化钛纳米管组成的高度稳定的有机-无机连接

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摘要

A poly(3,4-ethylenedioxythiophene) conducting polymer doped with poly(2-styrene sulfonate) (pEDOT: PSS) was efficiently electrodeposited on a layer composed of ordered titania nanotubes. TiO2 nanotubes were formed during an anodization process and, after calcinations, a layer was subjected to hydrogen plasma. Hydrogenation leads to Ti(III) formation, a decrease in resistance, and a huge increase of donor density when compared with pure titania. According to a detailed structure analysis, the coverage by the polymer matrix is uniform on the entire titania surface as well as along the tubes. The composite material exhibits highly enhanced anodic photocurrent (106 mu A cm(-2)) when compared with hydrogenated titania H-TiO2 (54 mu A cm(-2)) or pure polymer film (2 mu A cm(-2)). Moreover, H-TiO2/pEDOT: PSS is characterized with high photostability displayed during prolonged illumination. The proposed hydrogenation approach could be regarded as a facile titania modification for further electrochemical modifications.
机译:掺杂有聚(2-苯乙烯磺酸盐)(pEDOT:PSS)的聚(3,4-乙撑二氧噻吩)导电聚合物被有效地电沉积在由有序二氧化钛纳米管组成的层上。 TiO 2纳米管在阳极氧化过程中形成,并且在煅烧之后,使该层经历氢等离子体。与纯二氧化钛相比,氢化导致形成Ti(III),降低电阻并显着增加施主密度。根据详细的结构分析,聚合物基质在整个二氧化钛表面以及沿管的覆盖范围是均匀的。与氢化二氧化钛H-TiO2(54μAcm(-2))或纯聚合物膜(2μAcm(-2))相比,该复合材料具有更高的阳极光电流(106μAcm(-2))。 。此外,H-TiO2 / pEDOT:PSS的特点是在长时间照明下显示出高光稳定性。所提出的氢化方法可以被认为是用于进一步电化学修饰的二氧化钛的简便修饰。

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