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金属-导电聚合物杂化纳米结构:钯-聚咪唑纳米线的制备及其电学性质

Metal-conductive polymer hybrid nanostructures: preparation and electrical properties of palladium-polyimidazole nanowires.

作者信息

Al-Hinai Mariam, Hassanien Reda, Watson Scott M D, Wright Nicholas G, Houlton Andrew, Horrocks Benjamin R

机构信息

College of Applied Sciences Sohar, Engineering Department, PO Box 135, P.C. 311, Oman.

出版信息

Nanotechnology. 2016 Mar 4;27(9):095704. doi: 10.1088/0957-4484/27/9/095704. Epub 2016 Feb 8.

Abstract

A simple, convenient method for the formation of hybrid metal/conductive polymer nanostructures is described. Polyimidazole (PIm) has been templated on λ-DNA via oxidative polymerisation of imidazole using FeCl3 to produce conductive PIm/DNA nanowires. The PIm/DNA nanowires were decorated with Pd (Pd/PIm/DNA) by electroless reduction of PdCl4(-2) with NaBH4 in the presence of PIm/DNA; the choice of imidazole was motivated by the potential Pd(II) binding site at the pyridinic N atom. The formation of PIm/DNA and the presence of metallic Pd on Pd/PIm/DNA nanowires were verified by FTIR, UV-vis and XPS spectroscopy techniques. AFM studies show that the nanowires have diameters in the range 5-45 nm with a slightly greater mean diameter (17.1 ± 0.75 nm) for the Pd-decorated nanowires than the PIm/DNA nanowires (14.5 ± 0.89 nm). After incubation for 24 h in the polymerisation solution, the PIm/DNA nanowires show a smooth, uniform morphology, which is retained after decoration with Pd. Using a combination of scanned conductance microscopy, conductive AFM and two-terminal measurements we show that both types of nanowire are conductive and that it is possible to discriminate different possible mechanisms of transport. The conductivity of the Pd/PIm/DNA nanowires, (0.1-1.4 S cm(-1)), is comparable to the PIm/DNA nanowires (0.37 ± 0.029 S cm(-1)). In addition, the conductance of Pd/PIm/DNA nanowires exhibits Arrhenius behaviour (E(a )= 0.43 ± 0.02 eV) as a function of temperature in contrast to simple Pd/DNA nanowires. These results indicate that although the Pd crystallites on Pd/PIm/DNA nanowires decorate the PIm polymer, the major current pathway is through the polymer rather than the Pd.

摘要

本文描述了一种简单、便捷的制备金属/导电聚合物杂化纳米结构的方法。通过使用FeCl3对咪唑进行氧化聚合反应,已在λ-DNA上制备了聚咪唑(PIm),从而得到导电的PIm/DNA纳米线。在PIm/DNA存在的情况下,通过用NaBH4对PdCl4(-2)进行化学还原,在PIm/DNA纳米线上修饰了Pd(Pd/PIm/DNA);选择咪唑是因为吡啶氮原子处存在潜在的Pd(II)结合位点。通过傅里叶变换红外光谱(FTIR)、紫外可见光谱(UV-vis)和X射线光电子能谱(XPS)技术验证了PIm/DNA的形成以及Pd/PIm/DNA纳米线上金属Pd的存在。原子力显微镜(AFM)研究表明,纳米线的直径范围为5 - 45 nm,Pd修饰的纳米线平均直径(17.1 ± 0.75 nm)略大于PIm/DNA纳米线(14.5 ± 0.89 nm)。在聚合溶液中孵育24小时后,PIm/DNA纳米线呈现出光滑、均匀的形态,在用Pd修饰后仍保持这种形态。结合扫描电导显微镜、导电原子力显微镜和两端测量,我们表明两种类型的纳米线都是导电的,并且有可能区分不同的传输机制。Pd/PIm/DNA纳米线的电导率(0.1 - 1.4 S cm(-1))与PIm/DNA纳米线(0.37 ± 0.029 S cm(-1))相当。此外,与简单的Pd/DNA纳米线相比,Pd/PIm/DNA纳米线的电导随温度呈现阿仑尼乌斯行为(E(a ) = 0.43 ± 0.02 eV)。这些结果表明,尽管Pd/PIm/DNA纳米线上的Pd微晶修饰了PIm聚合物,但主要的电流传导途径是通过聚合物而不是Pd。

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