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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Size Effects on Surface Chemistry and Raman Spectra of Sub-5 nm Oxidized High-Pressure High-Temperature and Detonation Nanodiamonds
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Size Effects on Surface Chemistry and Raman Spectra of Sub-5 nm Oxidized High-Pressure High-Temperature and Detonation Nanodiamonds

机译:尺寸对表面化学的尺寸和拉曼光谱氧化高压高温和爆炸纳米胺

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摘要

Understanding materials with dimensions down to a few nanometers is of major importance for fundamental science as well as prospective applications. Structural transformation and phonon-confinement effects in the nanodiamonds (NDs) have been theoretically predicted below 3 nm in size. Here, we investigate the effect of size on the surface chemistry, microscopic structure, and Raman scattering of high-pressure high-temperature (HPHT) and detonation nanodiamonds (DNDs) down to 2-3 nm. The surface and size of NDs are controlled by annealing in air and ultracentrifugation resulting in three ND fractions. Particle size distribution (PSD) of the fractions is analyzed by combining dynamic light scattering, analytical ultracentrifugation, small-angle X-ray scattering, X-ray diffraction, and transmission electron microscopy as complementary techniques. Based on the obtained PSD, we identify size-dependent and synthesis-dependent differences of ND properties. In particular, interpretation of Raman scattering on NDs is revisited. Comprehensive comparison of detonation and pure monocrystalline HPHT NDs reveals effects of diamond core size and defects, chemical and temperature (in)stability, and limitations of current phonon confinement models. In addition, low-frequency Raman scattering in the 20-200 cm(-1) range is experimentally observed. The size dependence of this signal for both HPHT NDs and DNDs suggests that it may correspond to confined acoustic vibrational, "breathing-like" modes of NDs.
机译:了解尺寸小于几纳米的材料对于基础科学和未来的应用具有重要意义。理论上预测了纳米金刚石(NDs)中的结构转变和声子限制效应在3nm以下。在这里,我们研究了尺寸对高压高温(HPHT)和爆轰纳米金刚石(DND)的表面化学、微观结构和拉曼散射的影响。NDs的表面和大小由空气中的退火和超速离心控制,从而得到三个钕组分。将动态光散射、分析超速离心、小角X射线散射、X射线衍射和透射电子显微镜作为补充技术,分析各组分的粒度分布(PSD)。基于获得的PSD,我们确定了钕性质的尺寸依赖性和合成依赖性差异。特别是,重新解释了NDs上的拉曼散射。爆轰和纯单晶HPHT NDs的综合比较揭示了金刚石芯尺寸和缺陷、化学和温度稳定性的影响,以及当前声子约束模型的局限性。此外,在20-200厘米(-1)范围内,实验观察到了低频拉曼散射。HPHT NDs和DND的这种信号的大小依赖性表明,它可能对应于NDs的受限声振动、“呼吸样”模式。

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