首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Uniformly assembling n-type metal oxide nanostructures (TiO2 nanoparticles and SnO2 nanowires) onto P doped g-C3N4 nanosheets for efficient photocatalytic water splitting
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Uniformly assembling n-type metal oxide nanostructures (TiO2 nanoparticles and SnO2 nanowires) onto P doped g-C3N4 nanosheets for efficient photocatalytic water splitting

机译:将N型金属氧化物纳米结构(TiO2纳米颗粒和SnO2纳米线)均匀地组装到P掺杂G-C3N4纳米晶片中,用于有效的光催化水分裂

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摘要

Exploitation of g-C3N4 based photocatalysts capable of drastically boosting photoinduced electron-hole separation and solar-to-H-2 conversion efficiency consequences is a hotspot topic. Herein, a construction of few-layer P-doped g-C3N4 (PCN) nanosheets decorated with n-type metal oxides (NMOs) nanostructures, i.e. TiO2 nanoparticles and SnO2 nanowires via a self-assembly method is reported. NMOs uniformly distributing on PCN act as electron transporting channels, dramatically enhancing extraction efficiency of photogenerated electrons from PCN. The resultant TiO2/PCN and SnO2/PCN in the absence of Pt under visible light irradiation exhibit drastically enhanced H-2 evolution reaction (HER) rates of 1082 and 2090 mu mol h(-1) g(-1) comparing with PCN (132 mu mol h(-1) g(-1)). Such HER activities are superb among noble metal-free g-C3N4 based photocatalysts. Under a very low Pt amount (0.33 wt%), the HER rates of TiO2-Pt/PCN and SnO2-Pt/PCN further climb up to 11,632 and 12,469 mu mol h(-1) g(-1).
机译:基于G-C3N4的光催化剂的开发能够大大促进光导电的电子 - 孔分离和太阳能到H-2转换效率后果是热点主题。在此,据报道,据报道了用N型金属氧化物(NMOS)纳米结构(即,通过自组装方法的少层P掺杂的G-C3N4(PCN)纳米晶片的结构。 NMOS在PCN上均匀地分布作为电子传输通道,显着提高了PCN的光发射电子的提取效率。在可见光照射下没有PT的情况下,所得TiO2 / PCN和SnO2 / PCN显示出与PCN( 132μmolH(-1)g(-1))。这种运动在基于贵金属G-C3N4的光催化剂中是一流的。在非常低的Pt量(0.33wt%)下,其TiO2-Pt / PCN和SnO2-Pt / PCN的速率进一步爬升至11,632和12,469μmolH(-1)G(-1)。

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