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首页> 外文期刊>Journal of CO2 Utilization >Solar spectrum photocatalytic conversion of CO2 to CH4 utilizing TiO2 nanotube arrays embedded with graphene quantum dots
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Solar spectrum photocatalytic conversion of CO2 to CH4 utilizing TiO2 nanotube arrays embedded with graphene quantum dots

机译:利用石墨烯量子点利用TiO2纳米管阵列的CO2至CH4的太阳光谱光催化转化

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摘要

TiO2 nanotube arrays (TNT) offer an exciting prospect as a photocatalytic material architecture due to the combined properties of high surface area, 1-D vectorial charge transfer, and reduced photogenerated charge recombination. However the TiO2 band gap (approximate to 3.2 eV) limits light absorption to the UV region, which comprises but a small fraction of the solar spectrum energy. Graphene is known to effectively absorb visible light, and due to its high conductivity promote efficient charge transfer. Herein, we present a novel photocatalyst composed of TNTs sensitized with electrodeposited graphene quantum dots (GQDs). GQDs electrodeposition-duration is varied to optimize photocatalytic performance of the resulting nanostructured graphene-TNT (G-TNT) films. Under solar spectrum illumination we find optimal G-TNT samples promote a CO2 to CH4 photocatalytic conversion rate of 1.98 ppm cm(-2) h(-1), with carbon origin confirmed by (CO2)-C-13 isotopic test.
机译:TiO2纳米管阵列(TNT)由于高表面积,1-D载载电荷转移和降低的光催化电荷重组而具有令人兴奋的前景作为光催化材料结构。 然而,TiO2带隙(近似为3.2eV)将光吸收限制为UV区域,其包括但是太阳光谱能量的一小部分。 已知石墨烯可有效地吸收可见光,并且由于其高导电性促进有效的电荷转移。 在此,我们介绍了由用电沉积的石墨烯量子点(GQDS)敏化的TNT组成的新型光催化剂。 GQDS电沉积静脉静止以优化所得纳米结构石墨烯-TNT(G-TNT)薄膜的光催化性能。 在太阳频谱照射下,我们发现最佳的G-TNT样品促进CO 2至CH4光催化转化率1.98ppm cm(-2)h(-1),碳原子通过(CO 2)-13同位素试验证实。

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