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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Contribution of Functional Groups to the Raman Spectrum of Nanodiamond Powders
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Contribution of Functional Groups to the Raman Spectrum of Nanodiamond Powders

机译:官能团对纳米金刚石粉拉曼光谱的贡献

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In depth understanding of Raman spectra of carbon nanomaterials led to the extension of this technique from simple carbon allotrope detection (fingerprinting) to analysis of the dimensions and ordering of graphene, graphite and nanotubes. In characterization of nanodiamond powders, which have been attracting attention as one of the most promising carbon nanomaterials, Raman spectroscopy is still mainly used only for detecting the diamond phase because of poor understanding of other spectral features. In this paper, we critically examine different explanations of the broad asymmetric Raman band between 1500 and 1800 cm~(-1) present in all nanodiamond powders and provide an assignment of the contributing peaks, solving one of the major remaining mysteries in Raman spectroscopy of nanodiamond. By using nanodiamond powders with different and well-controlled surface chemistries, as well as in situ Raman measurements at elevated temperatures, we show that these peaks originate from O—H bending vibrations either from the surface functional groups or adsorbed water with contributions (shoulders) coming from sp~2 carbon and C=O stretching vibrations. The observation of a strong O—H contribution to the Raman spectrum of nanodiamond raises concerns regarding the use of water as a coolant during the Raman spectra acquisition, because water may affect Raman spectra in the wavenumber ranges corresponding to bending and stretching O—H vibrations.
机译:对碳纳米材料的拉曼光谱的深入了解导致该技术从简单的碳同素异形体检测(指纹识别)扩展到石墨烯,石墨和纳米管的尺寸和有序分析。在表征作为最有前途的碳纳米材料之一的纳米金刚石粉末时,由于对其他光谱特征的了解不足,拉曼光谱法仍主要仅用于检测金刚石相。在本文中,我们批判性地研究了所有纳米金刚石粉末中存在的1500至1800 cm〜(-1)之间的宽不对称拉曼谱带的不同解释,并提供了贡献峰的分配,解决了拉曼光谱学中存在的主要难题之一纳米金刚石。通过使用具有不同且可控的表面化学性质的纳米金刚石粉末,以及在高温下的原位拉曼测量,我们发现这些峰源自表面官能团或吸附水(有肩带)的OH弯曲振动来自sp〜2碳和C = O的拉伸振动。观察到OH对纳米金刚石拉曼光谱的强烈贡献引起了人们对在拉曼光谱获取过程中将水用作冷却剂的担忧,因为水可能会影响与弯曲和拉伸OH振动对应的波数范围内的拉曼光谱。

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