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A full-sunlight-driven photocatalyst with super long-persistent energy storage ability

机译:全阳光驱动的光催化剂具有超持久的储能能力

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摘要

A major drawback of traditional photocatalysts like TiO2 is that they can only work under illumination, and the light has to be UV. As a solution for this limitation, visible-light-driven energy storage photocatalysts have been developed in recent years. However, energy storage photocatalysts that are full-sunlight-driven (UV-visible-NIR) and possess long-lasting energy storage ability are lacking. Here we report, a Pt-loaded and hydrogen-treated WO3 that exhibits a strong absorption at full-sunlight spectrum (300–1,000 nm), and with a super-long energy storage time of more than 300 h to have formaldehyde degraded in dark. In this new material system, the hydrogen treated WO3 functions as the light harvesting material and energy storage material simultaneously, while Pt mainly acts as the cocatalyst to have the energy storage effect displayed. The extraordinary full-spectrum absorption effect and long persistent energy storage ability make the material a potential solar-energy storage and an effective photocatalyst in practice.
机译:像TiO2这样的传统光催化剂的主要缺点是它们只能在光照下工作,并且光必须是紫外线。作为对此限制的解决方案,近年来已经开发了可见光驱动的能量存储光催化剂。然而,缺乏全阳光驱动(UV-visible-NIR)并且具有持久的储能能力的储能光催化剂。在这里,我们报道了一种载有Pt并经过氢处理的WO3,在全日光光谱(300–1,000 nm)处表现出较强的吸收能力,并且超长的能量存储时间超过300 h,可在黑暗中降解甲醛。 。在这种新的材料系统中,氢气处理的WO3同时充当光收集材料和储能材料,而Pt主要充当助催化剂以显示储能效果。非凡的全光谱吸收效果和持久的能量存储能力使该材料在实践中成为潜在的太阳能存储和有效的光催化剂。

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