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Photocatalytic H2 generation on macro-mesoporous oxide-supported Pt nanoparticles

机译:在宏观 - 中孔氧化物支持的PT纳米粒子上产生的光催化H2

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摘要

A series of photocatalysts were prepared with crystalline macro-mesoporous oxides and Pt nanoparticles (Pt–TiO _(2) , Pt–Ta _(2) O _(5) , Pt–Nb _(2) O _(5) , Pt–ZrO _(2) , and Pt–Al _(2) O _(3) ). Transmission electron microscopy, X-ray diffraction, and N _(2) adsorption–desorption isotherms reveal that the oxides have prominent macro- and mesoporosity in the crystalline walls. The high surface area and crystalline walls of the oxides play significant roles in photocatalytic H _(2) production. Pt–TiO _(2) catalysts show enhanced photocatalytic water splitting efficiency for H _(2) generation (solar energy conversion efficiency of 1.06%) under a 150 W and 1.5 AM solar simulator. Pt–Ta _(2) O _(5) and Pt–Nb _(2) O _(5) also generate noticeable photocatalytic activities of 0.21% and 0.16%, respectively. The enhanced photocatalytic activity is attributed to correct band alignment of the porous oxides with absorption in the UV-visible range, and ordered macro- and mesoporosity of the crystalline oxides for efficient charge transfer.
机译:用结晶宏观介孔氧化物和Pt纳米颗粒制备一系列光催化剂(Pt-TiO _(2),Pt-Ta _(2)O _(5),Pt-Nb _(2)O _(5), Pt-ZrO _(2)和PT-AL _(2)O _(3))。透射电子显微镜,X射线衍射和N _(2)吸附 - 解吸等温物揭示了氧化物在结晶壁中具有突出的宏观和中间渗透性。氧化物的高表面积和晶体壁在光催化H _(2)的生产中起显着的作用。 PT-TiO _(2)催化剂显示在150W和1.5 AM太阳模拟器下的H _(2)代(太阳能转换效率为1.06%)的增强的光催化水分裂效率。 Pt-ta _(2)o _(5)和pt-nb _(2)o _(5)也分别产生明显的光催化活性为0.21%和0.16%。增强的光催化活性归因于在UV可见范围内具有吸收的多孔氧化物的校正带对准,并有序氧化物的宏观和中孔率以获得有效的电荷转移。

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