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Improving the properties of VTP by incorporating fullerene

机译:通过掺入富勒烯改善VTP的性质

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摘要

In this study, fabrication of vanadyl 3,10,17,24-tetra-tert-butyl-1,8,15,22-tetrakis(dimethylamino)-29H, 31H-phthalocyanine (VTP):[6,6]-phenyl C-71 butyric acid methyl ester (PC71BM) composite nanotubes is proven to be successful. VTP: PC71BM composite nanotubes were fabricated via a layer-by-layer method with the assistance of a templating technique. Field emission scanning electron microscopy (FESEM) images have shown successful infiltration of the VTP solution and the further replication of the template with different morphological properties. Infiltration of PC71BM and replication of VTP nanotubes have led to the improvement of morphological, optical and structural properties. Photo-absorption analysis via a UV-vis spectrometer has shown the remarkable absorption spectra of VTP nanotubes (p-type) as well as a further enhancement after the PC71BM (n-type) is introduced into the pre-synthesized nanotubes. Significant red-shifts in the Q-band and B-band region of the VTP: PC71BM composite nanotubes are observed with the incorporation of PC71BM. Morphological analysis of composite nanotubes with different behavior of infiltration has proven influential towards the optical behavior as well as their structural properties.
机译:在该研究中,制备3,10,17,24-四叔丁基-1,8,15,22-四(二甲基氨基)-29H,31H-酞菁(VTP)的制备:[6,6] - 苯基证明,C-71丁酸甲酯(PC71BM)复合纳米座是成功的。 VTP:通过层压方法通过层替代方法制造PC71BM复合纳米管。场发射扫描电子显微镜(FeSEM)图像表明VTP溶液的成功渗透和具有不同形态学性质的模板的进一步复制。 PC71BM的渗透和VTP纳米管的复制导致了形态学,光学和结构性的改善。通过UV-Vis光谱仪的光吸收分析已经示出了VTP纳米管(P型)的显着吸收光谱以及在将PC71BM(N型)引入预合成的纳米管之后进一步提高。通过掺入PC71BM,观察到VTP的Q频带和B频带区域中的显着的红移和VTP:PC71BM复合纳米管。具有不同渗透行为的复合纳米管的形态学分析已被证明是对光学行为的影响,以及它们的结构性能。

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