首页> 外文期刊>Applied clay science >Visible light sensitized porous clay heterostructure photocatalyst of zinc-silica modified montmorillonite by using tris (2,2'-bipyridyl) dichlororuthenium
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Visible light sensitized porous clay heterostructure photocatalyst of zinc-silica modified montmorillonite by using tris (2,2'-bipyridyl) dichlororuthenium

机译:可见光敏化多孔粘土异质结构光催化剂通过使用Tris(2,2'-Bibyridyl)二氯磺酸(2,2'-双吡啶)改性蒙脱石。

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摘要

A visible-light sensitization on porous clay heterostructure of zinc-silica modified montmorillonite (PCH-ZnSi) photocatalyst with tris(2,2?-bipyridyl) dichlororuthenium has been conducted. The preparation of PCH-ZnSi was performed by intercalation of surfactant and co-surfactant of cetyl trimethyl ammonium bromide-trimethanol amine followed by approaching zinc oxide and silica precursor under microwave assisted method followed by calcination, meanwhile the ruthenium complex attachment was conducted by Ru(Bpy)32+ impregnation into PCHZnSi. The results showed that porous clay heterostructure was successfully obtained as shown by the increased d001 of clay structure identified from XRD measurement and TEM analysis which represented the layers space ranging at 1.9-2.9 nm from 1.09 nm of montmorillonite. This increasing is in line with the evolution of pore distribution and the specific surface area enhancement. Moreover the sensitized form (Ru(Bpy)32+/PCH-ZnSi) represented the increasing photocatalytic activity in both UV and visible light exposure which corresponding to the photoluminescence spectrum ranging at visible region. The physicochemical characteristics supported the photocatalytic activity as revealed by the high degradation efficiency of methylene blue photodegradation which reached 99.8% under UV and 87.6% under visible light. The material has stability as it has maintained efficiency until 6 cycles, correlated with the availability of photoactive sites identified by XPS analysis.
机译:已经进行了锌二氧化硅改性蒙脱石(PCH-ZNSI)光催化剂的多孔粘土异质结构的可见光敏化,并进行了具有三(2,2β-苯吡啶)二氯钌的催化剂。通过嵌入甲丁基铵 - 三甲醇胺的表面活性剂和共表面活性剂进行PCH-ZnSI的制备,然后在微波辅助方法下接近氧化锌和二氧化硅前体,然后煅烧,同时由Ru( BPY)32+浸渍到PCHZNSI中。结果表明,从XRD测量和TEM分析中鉴定的粘土结构的增加的D001所示,成功获得了多孔粘土异质结构,其代表从1.09nm的蒙脱石的1.9-2.9nm处的层空间。这种增加符合孔分布的演变和比表面积增强。此外,敏化形式(Ru(BPY)32 + / PCH-ZNSI)表示UV和可见光暴露中的增加的光催化活性,其对应于在可见区域处的光致发光光谱。物理化学特性支持光催化活性,如亚甲基蓝光降解的高降解效率所揭示的,在可见光下达到99.8%和87.6%。该材料具有稳定性,因为它保持效率直至6个循环,与XPS分析鉴定的光活性位点的可用性相关。

著录项

  • 来源
    《Applied clay science》 |2021年第4期|106023.1-106023.10|共10页
  • 作者单位

    Univ Islam Indonesia Fac Math & Nat Sci Dept Chem Kampus Terpadu U2 Jl Kaliurang Km 14 Sleman Yogyakarta Indonesia;

    Univ Islam Indonesia Fac Math & Nat Sci Dept Chem Kampus Terpadu U2 Jl Kaliurang Km 14 Sleman Yogyakarta Indonesia;

    Univ Islam Indonesia Fac Math & Nat Sci Dept Chem Kampus Terpadu U2 Jl Kaliurang Km 14 Sleman Yogyakarta Indonesia;

    Univ Islam Indonesia Fac Math & Nat Sci Dept Chem Kampus Terpadu U2 Jl Kaliurang Km 14 Sleman Yogyakarta Indonesia;

    Univ Malaya Nanocatalysis Res Ctr NANOCAT Kuala Lumpur Malaysia;

    Natl Tsing Hua Univ Inst Analyt & Environm Sci 101 Sec 2 Kuang Fu Rd Hsinchu 30013 Taiwan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Clay; Montmorillonite; Photocatalyst; Porous clay heterostructure;

    机译:粘土;蒙脱石;光催化剂;多孔粘土异质结构;
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