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Thiol adsorption on metal oxides: an approach for selective deposition on zinc oxide nanoparticles

机译:硫醇在金属氧化物上的吸附:选择性沉积在氧化锌纳米颗粒上的方法

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摘要

We have previously discovered a novel, facile approach to encapsulate ZnO nanorods within thiol complexes. This approach results in a thiol uptake of 30-40% and a 400-500 nm thick thiol-Zn-thiol complex encapsulation layer surrounding ZnO nanorods. By controlling experimental parameters, it is possible to control the thiol deposition, enabling less uptake, which results in a surface monolayer instead of encapsulation. Through this approach, thiol modification of other metal oxide materials, namely TiO_2, A1_2O_3, and MgO, has been attempted. FTIR analysis indicates that thiol adsorption occurs only on ZnO; chemisorption of thiols on other nanoparticles is not evident. Ultrahigh vacuum single crystal adsorption studies demonstrate that ZnO(0001) is also more susceptible to thiol monolayer formation, as evidenced by lack of methanethiol adsorption on TiO_2(110) and MgO(0001). These results indicate that the facile thiol modification approach opens a new avenue for surface modification of multi-component metal oxide materials by enabling selective thiol modification of ZnO. This work has potential applicability for creating multiple ligand-functionalized materials, which could be useful for the design of novel multiplexing sensors and photovoltaics.
机译:我们之前已经发现了一种新颖,简便的方法将ZnO纳米棒包裹在硫醇复合物中。这种方法导致30-40%的巯基吸收和围绕ZnO纳米棒的400-500 nm厚的巯基-Zn-巯基复合物封装层。通过控制实验参数,可以控制硫醇的沉积,减少摄取,从而形成表面单层而不是包封。通过这种方法,已经尝试了其他金属氧化物材料的硫醇改性,即TiO_2,Al_2O_3和MgO。 FTIR分析表明硫醇吸附仅发生在ZnO上。硫醇在其他纳米颗粒上的化学吸附作用并不明显。超高真空单晶吸附研究表明,ZnO(0001)也更容易形成硫醇单层,这是由于在TiO_2(110)和MgO(0001)上缺乏甲硫醇吸附所证明的。这些结果表明,简便的硫醇改性方法通过实现ZnO的选择性硫醇改性,为多组分金属氧化物材料的表面改性开辟了一条新途径。这项工作对于创建多种配体功能化的材料具有潜在的适用性,这对于设计新型的多路复用传感器和光伏发电很有用。

著录项

  • 来源
    《Oxide-based materials and devices II》|2011年|p.79400K.1-79400K.7|共7页
  • 会议地点 San Francisco CA(US)
  • 作者单位

    U.S. Army Natick Soldier Research, Development Engineering Center Natick, MA 01760;

    U.S. Army Natick Soldier Research, Development Engineering Center Natick, MA 01760;

    Department of Chemistry and Center for Advanced Materials The University of Massachusetts Lowell, One University Avenue, Lowell, MA 01854;

    Department of Chemistry and Center for Advanced Materials The University of Massachusetts Lowell, One University Avenue, Lowell, MA 01854;

    Department of Chemistry and Center for Advanced Materials The University of Massachusetts Lowell, One University Avenue, Lowell, MA 01854;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 材料;
  • 关键词

    metal oxide; nanocrystalline; encapsulation; organothiol;

    机译:金属氧化物纳米晶封装有机硫醇;

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