首页> 外国专利> PULSED PHOTOTHERMAL PHASE TRANSFORMATION CONTROL FOR TITANIUM OXIDE STRUCTURES AND REVERSIBLE BANDGAP SHIFT FOR SOLAR ABSORPTION

PULSED PHOTOTHERMAL PHASE TRANSFORMATION CONTROL FOR TITANIUM OXIDE STRUCTURES AND REVERSIBLE BANDGAP SHIFT FOR SOLAR ABSORPTION

机译:氧化钛结构的脉冲光热相变控制和太阳能吸收的可逆带隙位移

摘要

A method for bandgap shift and phase transformation for titania structures. The method can include providing a flexible substrate, depositing a titania film onto the substrate, and exposing the titania film to one or more pulses of infrared energy of sufficient energy density and for a sufficient time to crystallize the titania film to predominantly anatase crystalline phase. The flexible substrate can be formed from a polymeric material, and the method can achieve a bandgap shift from greater than 3.0 eV to approximately 2.4 eV. The method can also include forming a crystalline titania layer over a substrate and annealing the crystalline titania layer by applying pulsed thermal energy sufficient to modify the phase constitution of the crystalline titania layer. The source of pulsed thermal energy can include an infrared flashlamp or laser, and the resulting titania structure can be used with photovoltaic and photoelectrolysis systems.
机译:二氧化钛结构的带隙位移和相变的方法。该方法可以包括提供柔性基板,将二氧化钛膜沉积到基板上,以及将二氧化钛膜暴露于具有足够能量密度和足够时间的一或多个红外能量脉冲中,以使二氧化钛膜结晶成主要为锐钛矿晶相。柔性基板可以由聚合物材料形成,并且该方法可以实现从大于3.0eV到大约2.4eV的带隙位移。该方法还可以包括在衬底上形成结晶二氧化钛层,并通过施加足以改变结晶二氧化钛层的相组成的脉冲热能来对结晶二氧化钛层进行退火。脉冲热能的来源可以包括红外闪光灯或激光,并且所得的二氧化钛结构可以与光伏和光电解系统一起使用。

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