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The influence of colloidal opal template and substrate type on 3D macroporous single and binary vanadium oxide inverse opal electrodeposition

机译:胶体蛋白石模板和基质类型对3D大孔单和二氧化钒反蛋白石电沉积的影响

摘要

We report on the electrodeposition of 3D macroporous vanadium oxide inverse opals and binary inverse opals on transparent conducting oxide substrates and stainless steel and thermally oxidized stainless steel substrates. The electrodeposition follows a diffusion limited growth mode to form 3D porous crystalline V2O5 after removal of a colloid photonic crystal template of self-assembled polystyrene spheres. Inverse opals were grown using spheres ranging in diameter from 0.5 μm to 6 μm, and binary inverse opals were also electrodeposited using binary mixtures of sphere sizes. We demonstrate that the ionic diffusion that leads to growth has charge-to-mass Coulombic efficiency ranging from 60–90%, depending on the voltage used. Additionally, the tortuosity in ionic diffusion through the opal to the substrate is significantly increased when large sphere diameter templates and binary opal templates are used. Analysis of the contribution of true substrate active area and the influence of template structure on ionic diffusivity confirms that inverse opal growth is dictated by the size of opal spheres, interstitial void clogging by smaller spheres in binary opals, and the conductivity of the substrate active area. The crystallinity of the inverse opal is consistent and a function of applied voltage, and attains phase pure orthorhombic V2O5.
机译:我们报告3D大孔钒氧化物反蛋白石和二元反蛋白石在透明导电氧化物基底,不锈钢和热氧化不锈钢基底上的电沉积。电沉积遵循扩散受限的生长模式,以去除自组装聚苯乙烯球体的胶体光子晶体模板后形成3D多孔晶体V2O5。使用直径范围从0.5μm到6μm的球体生长反蛋白石,并使用球体尺寸的二元混合物对二元反蛋白石进行电沉积。我们证明,导致生长的离子扩散具有按质量计的电荷对库仑效率,范围为60–90%,具体取决于所使用的电压。另外,当使用大球体直径模板和二元蛋白石模板时,通过蛋白石到基质的离子扩散的曲折性显着增加。对真实基质活性区域的贡献和模板结构对离子扩散率的影响的分析证实,蛋白石的反向生长取决于蛋白石球的大小,二元蛋白石中较小球体的填隙空隙以及基质活性区的电导率。反蛋白石的结晶度是恒定的,并且是施加电压的函数,并且获得纯的正交晶V2O5相。

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