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Surface Patterning of Mesoporous Niobium Oxide Films for Solar Energy Conversion

机译:用于太阳能转化的介孔氧化铌膜的表面构图

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An array of periodic surface features were patterned on mesoporous niobium oxide films by a soft-lithographic technique with the goal of constructing a photonic crystal (PC) structure on the back side of the oxide. The oxide films, fabricated by mixing sol-gel derived niobium oxide nanoparticles and hydroxypropyl cellulose, were employed as photoelectrodes in dye-sensitized solar cells (DSSCs), and their performance evaluated against their flat counterparts. The surface patterns were imprinted using a photocurable perfluoropolyether (PFPE) soft-replica of a silicon master with a two-dimensional array of cylindrical posts (200 nm (D) X 200 nm (H)) in hexagonal geometry. The PC on the niobium oxide surface caused large changes in optical measurements, particularly in the blue wavelengths. To evaluate the optical effect on solar energy conversion, the incident photon-to-current conversion efficiency (1PCE) was measured in the patterned devices and the control group. The IPCE of patterned niobium oxide anodes exhibited a relative enhancement in photocurrent generation over the wavelength range corresponding to the higher absorption in optical measurements.
机译:通过软光刻技术在中孔氧化铌膜上对一系列周期性表面特征进行构图,目的是在氧化物的背面构造光子晶体(PC)结构。通过将溶胶-凝胶衍生的氧化铌纳米粒子和羟丙基纤维素混合制成的氧化膜用作染料敏化太阳能电池(DSSC)中的光电极,并针对其平坦的对应物评估了它们的性能。使用硅母版的可光固化全氟聚醚(PFPE)软复制品以六边形几何形状的圆柱柱(200 nm(D)X 200 nm(H))的二维阵列压印表面图案。氧化铌表面上的PC引起光学测量的巨大变化,尤其是在蓝色波长方面。为了评估对太阳能转换的光学效应,在图案化器件和对照组中测量了入射光子-电流转换效率(1PCE)。图案化的氧化铌阳极的IPCE在对应于光学测量中较高吸收的波长范围内显示出光电流产生的相对增强。

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