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Sandwich-structured TiO2 inverse opal circulates slow photons for tremendous improvement in solar energy conversion efficiency

机译:三明治结构的TiO2反蛋白石循环缓慢的光子,可极大提高太阳能转换效率

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摘要

Photon management has enabled a true revolution in the development of high-performance semiconductor materials and devices. Harnessing the highest amount of energy from photons relies on the ability to design and fashion structures to trap the light for a longer time inside the device for more electron excitation. The light harvesting efficiency in many thin-film optoelectronic devices is limited due to low photon absorbance. Here we demonstrate for the first time that slow photon circulation in sandwich-structured photonic crystals with two stopbands fine tuned is ideally suited to enhance and spectrally engineer light absorption. The sandwich-structured TiO2 inverse opal possesses two stopbands, whose blue or red edge is respectively tuned to overlap with the electronic excitation energy of TiO2, thereby circulating the slow photons in the middle layer and enhancing light scattering at layer interfaces. This concept, together with the significantly increased control over photon management opens up tremendous opportunities for the realization of a wide range of high-performance, optoelectronic devices, and photochemical reactions.
机译:光子管理为高性能半导体材料和器件的发展带来了一场真正的革命。利用光子产生的最大能量取决于设计和制造结构的能力,以便将光捕获更长的时间以在设备内部进行更多的电子激发。由于低的光子吸收率,许多薄膜光电器件中的光收集效率受到限制。在这里,我们首次证明具有两个微调阻带的三明治结构光子晶体中缓慢的光子循环非常适合增强和光谱吸收光。三明治结构的TiO2反蛋白石具有两个阻带,其蓝色或红色边缘分别调整为与TiO2的电子激发能重叠,从而使慢速光子在中间层中循环并增强层界面处的光散射。这一概念以及对光子管理的显着增强控制,为实现各种高性能,光电器件和光化学反应打开了巨大的机遇。

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