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Growth mechanism of titanium dioxide nanowires for dye-sensitized solar cells

机译:染料敏化太阳能电池用二氧化钛纳米线的生长机理

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Mesoporous films made of titanium dioxide nanowires are desirable for dye-sensitized solar cells because nanowires provide direct conduction pathways for photogenerated electrons. Anatase titanium dioxide nanowires with polycrystalline microstructure were synthesized on titanium foil using a three-step process. First, the top surface of the titanium foil was transformed to Na2Ti2O4(OH)(2) nanotubes through hydrothermal oxidation in NaOH. Next, the Na2Ti2O4(OH)(2) nanotubes were converted to H2Ti2O4(OH)(2) nanotubes by ion exchange. Finally, the H2Ti2O4(OH)(2) nanotubes were converted to polycrystalline anatase nanowires through a topotactic transformation. The film morphology evolution, crystal structure transformations and growth mechanism are described in detail. Titanium foil reacts with NaOH to form Na2Ti2O4(OH)(2) sheets, which exfoliate and spiral into nanotubes. The Na2Ti2O4(OH)(2) nanotubes are immersed in HCl solution to replace the Na+ ions with H+ ions. During the topotactic transformation of H2Ti2O4(OH)(2) nanotubes to anatase TiO2 nanowires, the sheets made of edge bonded TiO6 octahedra in the H2Ti2O4(OH)(2) nanotubes dehydrate and move towards each other to form anatase crystals oriented along the nanotube axis which creates a polycrystalline nanowire. These mesoporous TiO2 nanowire films were suitable for use as dye-sensitized solar cell photoanodes.
机译:由二氧化钛纳米线制成的中孔膜对于染料敏化太阳能电池是理想的,因为纳米线为光生电子提供了直接的传导途径。使用三步法在钛箔上合成了具有多晶微结构的锐钛矿型二氧化钛纳米线。首先,通过在NaOH中进行水热氧化,将钛箔的顶面转化为Na2Ti2O4(OH)(2)纳米管。接下来,通过离子交换将Na2Ti2O4(OH)(2)纳米管转变为H2Ti2O4(OH)(2)纳米管。最后,H2Ti2O4(OH)(2)纳米管通过全能变换转换为多晶锐钛矿纳米线。详细描述了膜的形态演变,晶体结构转变和生长机理。钛箔与NaOH反应形成Na2Ti2O4(OH)(2)薄片,该薄片会剥落并螺旋成纳米管。将Na2Ti2O4(OH)(2)纳米管浸入HCl溶液中,用H +离子代替Na +离子。在H2Ti2O4(OH)(2)纳米管向锐钛矿型TiO2纳米线的定势转变过程中,由边缘键合的TiO6八面体在H2Ti2O4(OH)(2)纳米管中制成的片材脱水并相互移动,形成沿纳米管取向的锐钛矿晶体产生多晶纳米线的轴。这些中孔的TiO2纳米线薄膜适合用作染料敏化太阳能电池光阳极。

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