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首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >P4VP and Oligo(phenylenevinylene)-perylenebisimide Mixed Donor-Acceptor Supramolecular Comb Polymer Complexes with Improved Charge Carrier Mobility
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P4VP and Oligo(phenylenevinylene)-perylenebisimide Mixed Donor-Acceptor Supramolecular Comb Polymer Complexes with Improved Charge Carrier Mobility

机译:具有改善的电荷载流子迁移率的P4VP和低聚(亚苯基亚乙烯基)-ylene二酰亚胺混合的供体-受体超分子梳状聚合物配合物

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Random donor-acceptor (D-A) supramolecular comb polymers were formed when hydroxyl functionalized donor and acceptor small molecules based on Oligo(phenylenevinylene) (named OPVCN-OH) and Perylenebisimide (named UPBI-PDP), respectively, were complexed with Poly(4-vinyl pyridine) (P4VP). A series of random D-A supramolecular comb polymers were formed by varying the ratios of UPBI-PDP and OPVCN-OH with P4VP. A 100% P4VP-donor polymer complex [P4VP(OPV1.00)] and a 100% P4VP-acceptor polymer complex [P4VP(UPBI1.00)] were also synthesized and characterized. Complex formation was confirmed by FT-IR and H-1 NMR spectroscopy. Solid state structural studies carried out using small angle X-ray scattering and wide angle X-ray diffraction experiments revealed altered packing of the D and A molecules in the complexes. Transmission electron microscopy images showed lamellar structures in the <10 nm scale for the P4VP(OPV1.00), P4VP(UPBI1.00), and mixed P4VP (D-A) complexes. The effect of the nanoscopic D-A self-assembly on the bulk mobility of the materials was probed using SCLC measurements. The mixed D-A random complexes exhibited ambipolar charge transport characteristics with higher values for the average bulk hole mobility estimate. P4VP(OPV0.25+UPBI0.75) exhibited an average hole mobility in the order of 10(-2) cm(2) V-1 s(-1) and electron mobility 10(-5) cm(2) V-1 s(-1). (C) 2016 Wiley Periodicals, Inc.
机译:当基于Oligo(phenylenevinylene)(命名为OPVCN-OH)和Perylenebisimide(命名为UPBI-PDP)的羟基官能化的供体和受体小分子分别与Poly(4-)络合时,形成了随机的供体-受体(DA)超分子梳形聚合物。乙烯基吡啶)(P4VP)。通过改变UPBI-PDP和OPVCN-OH与P4VP的比例,形成了一系列无规D-A超分子梳形聚合物。还合成并表征了100%P4VP-供体聚合物复合物[P4VP(OPV1.00)]和100%P4VP-受体聚合物复合物[P4VP(UPBI1.00)]。通过FT-IR和H-1 NMR光谱确认复合物的形成。使用小角X射线散射和广角X射线衍射实验进行的固态结构研究表明,复合物中D和A分子的堆积发生了变化。透射电子显微镜图像显示,P4VP(OPV1.00),P4VP(UPBI1.00)和混合的P4VP(D-A)配合物的层状结构小于10 nm。使用SCLC测量探测了纳米级D-A自组装对材料的整体迁移率的影响。混合的D-A无规配合物表现出双极性电荷传输特性,其平均体孔迁移率估计值更高。 P4VP(OPV0.25 + UPBI0.75)的平均空穴迁移率约为10(-2)cm(2)V-1 s(-1)和电子迁移率约为10(-5)cm(2)V- 1秒(-1)。 (C)2016威利期刊公司

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