首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Nanoporous Delafossite CuAlO2 from Inorganic/Polymer Double Gels: A Desirable High-Surface-Area p-Type Transparent Electrode Material
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Nanoporous Delafossite CuAlO2 from Inorganic/Polymer Double Gels: A Desirable High-Surface-Area p-Type Transparent Electrode Material

机译:来自无机/聚合物双凝胶的纳米多孔Delafossite CuAlO2:一种理想的高表面面积p型透明电极材料

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摘要

Nanoporous structures of a p-type semiconductor, delafossite CuAlO2, with a high crystallinity have been fabricated through an inorganic/polymer double-gel process and characterized for the first time via Mott-Schottky measurements. The effect of the precursor concentration, calcination temperature, and atmosphere were examined to achieve high crystallinity and photoelectrochemical properties while maximizing the porosity. The optical properties of the nanoporous CuAlO2 are in good agreement with the literature with an optical band gap of 3.9 eV, and the observed high electrical conductivity and hole concentrations conform to highly crystalline and well-sintered nanoparticles observed in the product. The Mott-Schottky plot from the electrochemical impedance spectroscopy studies indicates a flat-band potential of 0.49 V versus Ag/AgCl. It is concluded that CuAlO2 exhibits band energies very close to those of NiO but with electrical properties very desirable in the fabrication of photoelectrochemical devices including dye-sensitized solar cells.
机译:具有高结晶度的p型半导体铜铁矿CuAlO2的纳米孔结构是通过无机/聚合物双凝胶工艺制造的,并首次通过Mott-Schottky测量进行表征。检查了前体浓度,煅烧温度和气氛的影响,以实现高结晶度和光电化学性能,同时使孔隙率最大化。纳米多孔CuAlO2的光学性质与光学带隙为3.9 eV的文献非常吻合,观察到的高电导率和空穴浓度与产品中观察到的高度结晶和烧结良好的纳米粒子相符。电化学阻抗谱研究的Mott-Schottky图表明,相对于Ag / AgCl,平带电势为0.49V。结论是,CuAlO2的能带非常接近NiO,但在制造包括染料敏化太阳能电池的光电化学装置中具有非常理想的电性能。

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