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首页> 外文期刊>Applied Surface Science >Diamond-coated ATR prism for infrared absorption spectroscopy of surface-modified diamond nanoparticles
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Diamond-coated ATR prism for infrared absorption spectroscopy of surface-modified diamond nanoparticles

机译:金刚石涂层ATR棱镜用于表面改性金刚石纳米粒子的红外吸收光谱

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摘要

Linear antenna microwave chemical vapor deposition process was used to homogeneously coat a 7 cm long silicon prism by 85 nm thin nanocrystalline diamond (NCD) layer. To show the advantages of the NCD-coated prism for attenuated total reflection Fourier transform infrared spectroscopy (ATR-FTIR) of nanoparticles, we apply diamond nanoparticles (DNPs) of 5 nm nominal size with various surface modifications by a drop-casting of their methanol dispersions. ATR-FTIR spectra of as-received, air-annealed, plasma-oxidized, and plasma-hydrogenated DNPs were measured in the 4000-1500 cm~(-1) spectral range. The spectra show high spectral resolution, high sensitivity to specific DNP surface moieties, and repeatability. The NCD coating provides mechanical protection against scratching and chemical stability of the surface. Moreover, unlike on bare Si surface, NCD hydrophilic properties enable optically homogeneous coverage by DNPs with some aggregation on submicron scale as evidenced by scanning electron microscopy and atomic force microscopy. Compared to transmission FTIR regime with KBr pellets, direct and uniform deposition of DNPs on NCD-ATR prism significantly simplifies and speeds up the analysis (from days to minutes). We discuss prospects for in situ monitoring of surface modifications and molecular grafting.
机译:线性天线微波化学气相沉积工艺用于通过85 nm薄纳米晶金刚石(NCD)层均匀涂覆7 cm长的硅棱镜。为了显示NCD涂层棱镜在纳米粒子的衰减全反射傅里叶变换红外光谱(ATR-FTIR)方面的优势,我们应用了标称尺寸为5 nm的金刚石纳米粒子(DNP),并通过滴铸甲醇对其进行了各种表面改性分散体。在4000-1500 cm〜(-1)光谱范围内测量了接收到的,空气退火的,等离子体氧化的和等离子体氢化的DNP的ATR-FTIR光谱。光谱显示出高光谱分辨率,对特定DNP表面部分的高灵敏度以及可重复性。 NCD涂层可提供机械保护,防止表面刮擦和化学稳定性。此外,与在裸露的Si表面上不同,NCD亲水性能够实现DNP光学均一的覆盖,并具有亚微米级的聚集,这由扫描电子显微镜和原子力显微镜证明。与具有KBr颗粒的透射FTIR方案相比,DNP在NCD-ATR棱镜上的直接均匀沉积会大大简化并加快分析速度(从几天到几分钟)。我们讨论了表面修饰和分子接枝的原位监测前景。

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  • 来源
    《Applied Surface Science》 |2013年第1期|411-417|共7页
  • 作者单位

    Institute of Physics of the ASCR, v.v.i, Cukrovarnicka 10,Praha 6, Czech Republic;

    Institute of Physics of the ASCR, v.v.i, Cukrovarnicka 10,Praha 6, Czech Republic;

    Institute of Physics of the ASCR, v.v.i, Cukrovarnicka 10,Praha 6, Czech Republic;

    Institute of Physics of the ASCR, v.v.i, Cukrovarnicka 10,Praha 6, Czech Republic;

    Institute of Physics of the ASCR, v.v.i, Cukrovarnicka 10,Praha 6, Czech Republic;

    Institute of Physics of the ASCR, v.v.i, Cukrovarnicka 10,Praha 6, Czech Republic;

    CEA, LIST, Diamond Sensors Laboratory, F-91191 Gif-sur-Yvette, France;

    CEA, LIST, Diamond Sensors Laboratory, F-91191 Gif-sur-Yvette, France;

    CEA, LIST, Diamond Sensors Laboratory, F-91191 Gif-sur-Yvette, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ATR FTIR; CVD; nanocrystalline diamond; microwave; hydrogenation; nanopowder;

    机译:ATR FTIR;CVD;纳米晶金刚石;微波;加氢;纳米粉;

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