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首页> 外文期刊>RSC Advances >Efficient preparation of ultralarge graphene oxide using a PEDOT:PSS/GO composite layer as hole transport layer in polymer-based optoelectronic devices
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Efficient preparation of ultralarge graphene oxide using a PEDOT:PSS/GO composite layer as hole transport layer in polymer-based optoelectronic devices

机译:在聚合物基光电器件中使用PEDOT:PSS / GO复合层作为空穴传输层有效制备超大型氧化石墨烯

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摘要

We herein report an investigation of ultralarge graphene oxide (UL-GO) sheet/poly(3,4-ethylenedioxythiophene): poly(styrenesulfonate) (PEDOT: PSS) thin composite layers fabricated by spin coating on an indium-tin-oxide (ITO) anode as hole transport layer (HTL) in polymer light-emitting diodes (PLEDs), as well as polymer solar cells (PSCs). Monolayer UL-GOs were first synthesized based on a novel solution-phase method involving pre-exfoliation of graphite flakes which were then mixed into the PEDOT:PSS solution in various specific amounts. The PEDOT:PSS composite film mixed with 0.04 wt% UL-GO by weight exhibits a conductivity of 749.4 S cm(-1) and a transmittance of 88.6% at 550 nm. The PEDOT:PSS/GO HTL shows enhanced charge carrier transport because of improved conductivity by the weakening of the coulombic attraction between PEDOT and PSS by the functional groups on GO nanosheets, and the formation of an extended conductive network. Moreover, it can effectively block electrons and reduce resistance in the HTL, leading to better injection and transport of holes and lower turn-on voltage and resulting in a higher overall efficiency in PLEDs. Similarly, it remarkably increases the short circuit current (J(sc)), and PSC efficiency because of a remarkable reduction of exciton quenching that results in higher charge extraction in PSCs. The optimized PLEDs and PSCs with a PEDOT:PSS/GO composite HTL layer show a maximum luminosity of 725.6 cd m(-2) (at 10.6 V) for PLEDs, as well as a power conversion efficiency of 3.388% for PSCs, which were improved by similar to 11% and 12%, respectively, compared to reference PLEDs and PSCs with a PEDOT:PSS layer.
机译:我们在此报告了通过在铟锡氧化物(ITO)上旋涂制备的超大型石墨烯(UL-GO)片/聚(3,4-乙撑二氧噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS)薄复合层的研究)作为聚合物发光二极管(PLED)和聚合物太阳能电池(PSC)中的空穴传输层(HTL)的阳极。首先基于一种新的固溶相方法合成单层UL-GO,该方法涉及石墨薄片的预剥落,然后将其以各种特定的量混合到PEDOT:PSS溶液中。混合有0.04 wt%UL-GO的PEDOT:PSS复合膜在550 nm处的电导率为749.4 S cm(-1),透射率为88.6%。 PEDOT:PSS / GO HTL由于通过GO纳米片上的官能团削弱了PEDOT和PSS之间的库伦吸引而改善了电导率,并形成了扩展的导电网络,从而提高了电荷载流子的传输。而且,它可以有效地阻挡电子并降低HTL中的电阻,从而导致更好的空穴注入和传输以及更低的导通电压,并导致PLED的整体效率更高。类似地,由于激子猝灭的显着减少,它显着增加了短路电流(J(sc))和PSC效率,从而导致了PSC中更高的电荷提取。具有PEDOT:PSS / GO复合HTL层的经过优化的PLED和PSC显示PLED的最大发光度为725.6 cd m(-2)(在10.6 V时),而PSC的功率转换效率为3.388%。与具有PEDOT:PSS层的参考PLED和PSC相比,分别提高了约11%和12%。

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