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Synthesis of 3D ordered macroporous indium tin oxide using polymer colloidal crystal template

机译:利用聚合物胶体晶体模板合成3D有序大孔铟锡氧化物

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Three-dimensional (3D) ordered macroporous indium tin oxide (ITO) is prepared using a polymer colloidal crystal template that is formed by self-assembly of the monodisperse poly(methyl methacrylate) (PMMA) microspheres. The morphologies and BET surface area of the macroporous material is examined by scanning electron microscope, transmission electron microscopy and N_2 adsorption/desorption. Results indicate that the macroporous material has highly ordered arrays of the uniform pores replicated from the PMMA colloidal crystal template when the polymer colloidal crystal template is removed by calcinations at 500 deg C. The pore diameter (about 450 nm) of macroporous ITO slightly shrank to the PMMA microspheres. The BET surface area and pore volume of the macroporous material are 389 m~2 centre dot g~(-1) and 0.36 m~3 centre dot g~(-1), respectively. Moreover, the macroporous ITO, containing 5 mol percent Sn and after annealing under vacuum, shows the minimum resistivity of rho = 8.2 X 10~(-3) OMEGA centre dot cm. The conductive mechanism of macroporous ITO is discussed, and it is believed that the oxygen vacancies are the major factor for excellent electrical properties.
机译:使用聚合物胶体晶体模板制备三维(3D)有序的大孔铟锡氧化物(ITO),该模板是通过单分散聚(甲基丙烯酸甲酯)(PMMA)微球的自组装形成的。通过扫描电子显微镜,透射电子显微镜和N_2吸附/解吸检查大孔材料的形态和BET表面积。结果表明,当通过在500摄氏度下煅烧除去聚合物胶体晶体模板时,大孔材料具有从PMMA胶体晶体模板复制的均匀孔的高度有序的阵列。大孔ITO的孔径(约450 nm)略微收缩至PMMA微球。大孔材料的BET表面积和孔体积分别为389m〜2个中心点g〜(-1)和0.36m〜3个中心点g〜(-1)。而且,含有5mol%Sn并在真空下退火后的大孔ITO显示出最小电阻率rho = 8.2×10 3(-3)OMEGA中心点cm。讨论了大孔ITO的导电机理,据信氧空位是获得优异电性能的主要因素。

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