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Hydrogen Energy Storage Materials Based on Conducting Polymers and Their Nanocomposites

机译:基于导电聚合物及其纳米复合材料的储氢材料

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Novel hydrogen energy storage materials based on electrically conducting polymers and their nanocompistes are reported. The synthesis and hydrogen adsorption properties of polypyrrole and its composites with nanotubes were investigated. The prepared polypyrrole has been characterized by scanning electron microscopy, thermogravimeteric analysis, and FTIR spectroscopy. In addition, the nitrogen adsorption-desorption was measured and the hydrogen adsorption capacity was measured volumetrically by the computer-controlled commercial "pressure-composition temperature". The as-prepared mesoporous polypyrrole has been found to reversibly adsorb 2.2 wt% H_2 at 77 K and 9 MPa. The composites were synthesized by a facile and environmentally friendly method, wherein pyrrole was polymerized on the surfaces of the halloysite nanotubes via a solid-state, vapor-phase polymerization technique. In this manner, the polypyrrole was not only polymerized on the external surfaces of the halloysite nanotubes but was also intercalated between the halloysite nanotubes layers. The halloysite nanotube-polypyrrole composite materials were characterized by transmission electron microscopy (TEM), scanning electron microscopy (SEM), X-ray diffraction (XRD), thermogravimetric analysis (TGA), electrical conductivity measurements, FTIR spectroscopy and a pressure-composition temperature (PCT) apparatus. The hydrogen storage capacity of the new composite was enhanced by 21% in comparison to pristine nanotubes.
机译:报道了基于导电聚合物及其纳米复合物的新型氢储能材料。研究了聚吡咯及其纳米管复合材料的合成及氢吸附性能。制备的聚吡咯已经通过扫描电子显微镜,热重分析和FTIR光谱表征。另外,通过计算机控制的市售“压力组成温度”来测量氮的吸附-脱附和体积的氢吸附容量。已经发现所制备的中孔聚吡咯在77K和9MPa下可逆地吸附2.2wt%的H_2。通过简便且环境友好的方法合成复合材料,其中吡咯通过固态气相聚合技术在埃洛石纳米管的表面上聚合。以这种方式,聚吡咯不仅在埃洛石纳米管的外表面上聚合,而且还插在埃洛石纳米管层之间。通过透射电子显微镜(TEM),扫描电子显微镜(SEM),X射线衍射(XRD),热重分析(TGA),电导率测量,FTIR光谱和压力组成温度来表征埃洛石纳米管-聚吡咯复合材料(PCT)设备。与原始纳米管相比,新复合材料的储氢能力提高了21%。

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