首页> 外文期刊>CERAMICS INTERNATIONAL >Laser-induced anchoring of WO3 nanoparticles on reduced graphene oxide sheets for photocatalytic water decontamination and energy storage
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Laser-induced anchoring of WO3 nanoparticles on reduced graphene oxide sheets for photocatalytic water decontamination and energy storage

机译:WO3纳米颗粒在氧化物氧化物片上的激光诱导的WO3纳米颗粒用于光催化水去污和能量储存

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摘要

In this work, the synthesis of tungsten oxide/reduced graphene oxide (WO3-rGO) nanocomposite, using a simple method of pulsed laser ablation in liquids (PLAL) is reported. The pulsed laser beam of 355 nm wavelength carries out two simultaneous processes: the reduction of graphene oxide and at the same time the anchoring of nanostructured WO3 on reduced graphene oxide. In the photo-catalytic application, WO3-rGO shows much better visible light absorption and less photo-generated charge recombination than pure WO3, as indicated by optical absorption and photoluminescence spectra. These improved features in WO3-rGO significantly enhanced the photo-catalytic decontamination of methylene blue (MB) dye in the water, compared to the use of pure WO3 as a photocatalyst. A Poly 2-acrylamido-2-methyl-l-propanesulfonic acid (PAMPS) based electrolyte together with the high electrical conductance and porosity of rGO which were produced after anchoring WO3 on the graphene oxide, were harnessed for the energy storage application using this material for a supercapacitor. The specific capacitance for WO3-rGO based device is achieved to be 577 F g(-1) measured by the galvanostatic charge-discharge (GCD) method. Also, at a power density of 1000 W kg(-1), the as-synthesized WO3-rGO demonstrated a large energy density value of 76.3 Wh Kg(-1) that is much larger than obtained, using WO3 alone. Besides these photocatalytic and energy storage performance evaluation of WO3-rGO, the optical, morphological and elemental characteristics of synthesized WO3-rGO were also investigated to study the improved performance of the nanocomposite in these two applications.
机译:在这项工作中,据报道,使用简单的脉冲激光烧蚀方法(PLA1)的简单方法,综合氧化钨/氧化铟烯氧化物(WO3-RGO)纳米复合材料的合成。 355nm波长为355nm波长的脉冲激光束连续两个同时处理:氧化石墨烯的还原,同时纳米结构WO3在还原的氧化石墨烯上。在光催化应用中,WO3-rgo显示出比纯WO3更好的可见光吸收和较少的光产生电荷重组,如光学吸收和光致发光光谱所示。与使用纯WO3作为光催化剂相比,WO3-RGO中的这些改进的特征显着增强了水中亚甲基蓝(MB)染料的光催化净化。利用该材料利用使用该材料的锚固WO3在锚固WO3之后产生的聚2-丙基丙烯醛-2-甲基-1-丙二酸(PAMP)基于RGO的高电导和孔隙率。对于超级电容器。 WO3-RGO基于基于WO3-RGO的装置的特定电容是通过GALVANOTATIC电荷 - 放电(GCD)方法测量的577Fg(-1)。此外,在1000W kg(-1)的功率密度下,AS合成的WO3-RGO表现出76.3WH kg(-1)的大能量密度值,其单独使用WO3远远大得多。除了这些光催化和储能性能评价WO3-RGO,还研究了合成的WO3-RGO的光学,形态学和元素特征,以研究在这两种应用中的纳米复合材料的改善性能。

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  • 来源
    《CERAMICS INTERNATIONAL》 |2020年第1期|共8页
  • 作者单位

    King Fahd Univ Petr &

    Minerals Phys Dept Laser Res Grp Mailbox 5047 Dhahran 31261 Saudi Arabia;

    King Fahd Univ Petr &

    Minerals Phys Dept Laser Res Grp Mailbox 5047 Dhahran 31261 Saudi Arabia;

    King Fahd Univ Petr &

    Minerals Phys Dept Laser Res Grp Mailbox 5047 Dhahran 31261 Saudi Arabia;

    King Fahd Univ Petr &

    Minerals Phys Dept Laser Res Grp Mailbox 5047 Dhahran 31261 Saudi Arabia;

    King Fahd Univ Petr &

    Minerals Phys Dept Laser Res Grp Mailbox 5047 Dhahran 31261 Saudi Arabia;

    Imam Abdulrahman Bin Faisal Univ IRMC Dept Genet Res POB 1982 Dammam 31441 Saudi Arabia;

    King Fahd Univ Petr &

    Minerals Phys Dept Laser Res Grp Mailbox 5047 Dhahran 31261 Saudi Arabia;

    King Fahd Univ Petr &

    Minerals Phys Dept Laser Res Grp Mailbox 5047 Dhahran 31261 Saudi Arabia;

    Imam Abdulrahman Bin Faisal Univ IRMC Dept Phys 1982 POB 1982 Dammam 31441 Saudi Arabia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 陶瓷工业;硅酸盐工业;
  • 关键词

    Pulsed laser ablation in liquid; Photo-catalytic decontamination; PAMPS; Supercapacitor; Energy storage;

    机译:液体中的脉冲激光烧蚀;光催化去污;PAMPS;超级电容器;能量存储;

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