Lee Jangwon, Kim Hyun Suk, Osawa Eiji, Hoang Geun C, Lee Kee Hag
Department of Bio Nano Chemistry, Nanoscale Science and Technology Institute, Wonkwang University, Iksan, 54538, Republic of Korea.
Research Institute for fashion Industry, Iksan 54524, Republic of Korea.
J Nanosci Nanotechnol. 2021 Mar 1;21(3):1815-1819. doi: 10.1166/jnn.2021.18949.
Nanoscale carbon materials have a broad range of applications in the field of surface and material sciences. Each vibration mode of a Raman and Fourier transform infrared (FT-IR) spectra corresponds to a specific frequency of a bond in the core and surface of the crystal, thus it is highly sensitive to morphology, implying that every band is sensitive to the orientation of the bonds and the atomic weight at either end of the bond. Accordingly, in this study we apply transmission electron microscope (TEM), Raman spectroscopies, and model calculations to study the relative content of carbon-carbon (C-C) bonds to the anhydrous and weakly aggregated elementary nanoscale carbon particles of detonation nanodiamonds. One point of the Raman bands at approximately 1300 cm established that there are highly uniform C-C bonds in a tetrahedral crystal field environment not unlike that of diamonds. Another point at approximately 1600 cm would be a hexagonal graphene-like sheet. By analyzing the relative content of carbon bonds using the area of intensity of the Raman peaks and a simulation of crystal morphology, we suggest that the number of graphene surface layers would be monolayers in nanodiamonds, comprising two kinds of C-C bonds, one being ₃ bonds of diamond in the core and the other being ₂ bonds of graphene on the surface.
纳米级碳材料在表面和材料科学领域有着广泛的应用。拉曼光谱和傅里叶变换红外光谱(FT-IR)的每种振动模式都对应于晶体核心和表面中特定键的频率,因此它对形态非常敏感,这意味着每个谱带都对键的取向以及键两端的原子量敏感。因此,在本研究中,我们应用透射电子显微镜(TEM)、拉曼光谱和模型计算来研究爆轰纳米金刚石的无水且弱聚集的基本纳米级碳颗粒中碳 - 碳(C - C)键的相对含量。拉曼谱带在约1300 cm处的一个峰值表明,在与金刚石类似的四面体晶体场环境中存在高度均匀的C - C键。另一个在约1600 cm处的峰值将对应于类似六边形石墨烯的薄片。通过使用拉曼峰强度面积分析碳键的相对含量并模拟晶体形态,我们认为纳米金刚石中石墨烯表面层的数量为单层,包含两种C - C键,一种是核心中金刚石的C - C₃键,另一种是表面上石墨烯的C - C₂键。