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首页> 外文期刊>Synthetic Metals >Composites of low bandgap conducting polymer-wrapped MWNT and poly(methyl methacrylate) for low percolation and high transparency
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Composites of low bandgap conducting polymer-wrapped MWNT and poly(methyl methacrylate) for low percolation and high transparency

机译:低带隙导电聚合物包裹的MWNT和聚甲基丙烯酸甲酯的复合材料,具有低渗透性和高透明度

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The composites of multi-walled carbon nanotubes (MWNT) wrapped with low bandgap conjugated polymer and poly(methyl methacrylate) (PMMA) were prepared for transparent conductive films. NIR-absorbing poly(ethyl thieno[3,4-b]thiophene-2-carboxylate) (PTTEt) with E_s of 1.0 eV was used in this study. Upon hybridization with MWNT, PTTEt in an insulating state became partially conductive due to electron transfer from PTTEt to MWNT, meaning that PTTEt can function as conductive glue interconnecting MWNT in a PMMA matrix. The electrical conduction of the composites (PTTEt-MWNT/PMMA), consisting of PTTEt-wrapped MWNT (PTTEt-MWNT/PMMA) and PMMA, showed the percolation at 0.10wt% MWNT loading, which was ca. 0.18wt% lower than the composites of MWNT and PMMA (MWNT/PMMA). The maximum conductivity of PTTEt-MWNT/PMMA, on the other hand, was one order of magnitude lower than that of MWNT/PMMA, suggesting that PTTEt incorporation onto MWNT for transparent conductive films is effective within a specific range of MWNT loadings (i.e., between percolation thresholds of MWNT/PMMA and PTTEt-MWNT/PMMA). The comparison of transmittance of PTTEt-MWNT/PMMA (0.18 wt% MWNT) with MWNT/PMMA (0.32 wt% MWNT), possessing the same conductivities (3x10~(-3) S cm~(-1)), showed ca. 10% enhanced transmittance at 550 nm. These results imply that hybridization of low bandgap conjugated polymers with carbon nanotubes can be utilized for the reduction of percolation threshold and the increase of optical transparency without sacrificing conductivities at low MWNT loadings.
机译:制备了低带隙共轭聚合物包裹的多壁碳纳米管(MWNT)和聚甲基丙烯酸甲酯(PMMA)的复合材料,用于透明导电膜。在这项研究中,使用了吸收近红外光谱的聚(乙基噻吩并[3,4-b]噻吩-2-羧酸乙酯)(PTTEt),E_s为1.0 eV。与MWNT杂交后,由于电子从PTTEt转移到MWNT,处于绝缘状态的PTTEt变得部分导电,这意味着PTTEt可以用作在PMMA基质中互连MWNT的导电胶。由PTTEt包裹的MWNT(PTTEt-MWNT / PMMA)和PMMA组成的复合材料(PTTEt-MWNT / PMMA)的电导率显示,在0.10wt%MWNT负载下,渗滤作用约为。比MWNT和PMMA的复合材料(MWNT / PMMA)低0.18wt%。另一方面,PTTEt-MWNT / PMMA的最大电导率比MWNT / PMMA低一个数量级,这表明将PTTEt掺入透明导电膜的MWNT中在特定的MWNT负载范围内是有效的(即,在MWNT / PMMA和PTTEt-MWNT / PMMA的渗透阈值之间)。 PTTEt-MWNT / PMMA(0.18 wt%MWNT)与具有相同电导率(3x10〜(-3)S cm〜(-1))的MWNT / PMMA(0.32 wt%MWNT)的透射率比较。 550 nm的透射率提高10%。这些结果暗示低带隙共轭聚合物与碳纳米管的杂交可用于降低渗透阈值和增加光学透明度,而不会牺牲低MWNT负载下的电导率。

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