...
首页> 外文期刊>ACS nano >Electronic Reconstruction of alpha-Ag2WO4 Nanorods for Visible-Light Photocatalysis
【24h】

Electronic Reconstruction of alpha-Ag2WO4 Nanorods for Visible-Light Photocatalysis

机译:电子重建α-Ag2WO4纳米棒的可见光光催化

获取原文
获取原文并翻译 | 示例
           

摘要

alpha-Ag2WO4 (AWO) has been studied extensively due to its H-2 evolution and organic pollution degradation ability under the irradiation of UV light. However, the band gap of AWO is theoretically calculated to be 3.55 eV, resulting in its sluggish reaction to visible light. Herein, we demonstrated that, by using the electronic reconstruction of AWO nanorods upon a unique process of laser irradiation in liquid, these nanorods performed good visible-light photocatalytic organics degradation and H-2 evolution. Using commercial AWO powders as the starting materials, we achieved the electronic reconstruction of AWO by a recrystallization of the starting powders upon laser irradiation in liquid and synthesized AWO nanorods. Due to the weak bond energy of AWO and the far from thermodynamic equilibrium process created by laser irradiation in liquid, abundant cluster distortions, especially [WO6] cluster distortions, are introduced into the crystal lattice, the defect density increases by a factor of 2.75, and uneven intermediate energy levels are inset into the band gap, resulting in a 0.44 eV decrease of the band gap, which modified the AWO itself by electronic reconstruction to be sensitive to visible light without the addition of others. Further, the first-principles calculation was carried out to clarify the electronic reconstruction of AWO, and the theoretical results confirmed the deduction based on the experimental measurements.
机译:由于α-Ag2WO4(AWO)在紫外线照射下会发生H-2分解和有机污染降解能力,因此对其进行了广泛的研究。然而,AWO的带隙在理论上被计算为3.55eV,导致其对可见光的反应缓慢。在这里,我们证明,通过在液体中激光辐照的独特过程中使用AWO纳米棒的电子重构,这些纳米棒表现出良好的可见光光催化有机物降解和H-2析出。使用市售的AWO粉末作为起始材料,我们通过在液体和合成的AWO纳米棒中进行激光辐照使起始粉末重结晶,实现了AWO的电子重构。由于AWO的键能很弱,并且与液体中激光照射所产生的热力学平衡过程相去甚远,因此,大量的簇畸变,特别是[WO6]簇畸变被引入到晶格中,缺陷密度增加了2.75倍,带隙中插入了不均匀的中间能级,导致带隙减小了0.44 eV,这通过电子重构修改了AWO本身,使其对可见光敏感,而无需添加其他能量。此外,进行了第一性原理计算以阐明AWO的电子重构,并且理论结果证实了基于实验测量的推论。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号