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Graphene Oxide alpha Bi2O3 Composites for Visible Light Photocatalysis, Chemical Catalysis and Solar Energy Conversion

机译:石墨烯氧化物αBi2O3复合材料,用于可见光光催化,化学催化和太阳能转换

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摘要

The growing challenges of environmental purification by solar photocatalysis, precious metal free catalysis and photocurrent generation in photovoltaic cells are receiving the utmost global attention. Here we demonstrate the one pot green chemical synthesis of a new stable heterostructured, eco friendly, multifunctional micro composite consisting of amp; 945; Bi2O3 micro needles intercalated with anchored graphene oxide GO micro sheets 1.0 wt for the above mentioned applications in a large economical scale. The bare amp; 945; Bi2O3 micro needles display twice as better photocatalytic activities than commercial TiO2 Degussa P25 while the GO hybridized composite exhibit 4 6 times enhanced photocatalytic activities than neat TiO2 photocatalyst in the degradation of colored aromatic organic dyes crystal violet and rhodamine 6G under visible light irradiation 300 W tungsten lamp . The highly efficient activity is associated with the strong surface adsorption ability of GO for aromatic dye molecules, the high carrier acceptability and efficient electron hole pair separation in Bi2O3 by individual adjoining GO sheets. Introduction of Ag nanoparticles 2.0 wt further enhances the photocatalytic performance of the composite over 8 folds due to a plasmon induced electron transfer process from Ag nanoparticles via GO sheets into the conduction band of Bi2O3. The new composites are also catalytically active. They catalyze the reduction of 4 nitrophenol to 4 aminophenol in presence of borohydride ions. Photoanodes assembled from GO amp; 945; Bi2O3 and Ag GO amp; 945; Bi2O3 composites display an improved photocurrent response power conversion efficiency 20 higher over those prepared without GO in dye sensitized solar cells DSSCs .
机译:太阳能电池中通过太阳能光催化,无贵金属催化和光电流产生来净化环境的挑战日益受到全球的关注。在这里,我们演示了一种新型的稳定杂化,生态友好,多功能的微复合材料的一锅绿色化学合成方法,该复合材料由amp; 945;用于上述应用的Bi2O3微型针插入了1.0 wt%的锚固氧化石墨烯GO微型片,经济实惠。裸耳放; 945; Bi2O3微针的光催化活性比市售TiO2 Degussa P25好两倍,而GO杂化复合物在可见光照射下300 W钨在降解有色芳香族有机染料结晶紫和若丹明6G方面比纯TiO2光催化剂增强了4 6倍。灯。高效的活性与GO对芳族染料分子的强表面吸附能力,高的载体可接受性以及Bi2O3中单个相邻的GO片对电子空穴对的有效分离有关。 Ag纳米粒子2.0 wt%的引入进一步增强了复合材料的光催化性能,使其提高了8倍以上,这是由于等离子激元诱导的电子从Ag纳米粒子通过GO片进入Bi2O3的导带的过程。新的复合材料也具有催化活性。它们在存在硼氢化物离子的情况下催化4硝基苯酚还原为4氨基苯酚。 GO amp组装的光电阳极; 945; Bi2O3和Ag GO放大器; 945;在染料敏化太阳能电池DSSC中,Bi2O3复合材料的光电流响应功率转换效率比没有GO制备的更高20倍。

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