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Twinning of cubic diamond explains reported nanodiamond polymorphs

机译:立方钻石的孪晶解释了报道的纳米金刚石多晶型物

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摘要

The unusual physical properties and formation conditions attributed to h-, i-, m-, and n-nanodiamond polymorphs has resulted in their receiving much attention in the materials and planetary science literature. Their identification is based on diffraction features that are absent in ordinary cubic (c-) diamond (space group: Fd-3m). We show, using ultra-high-resolution transmission electron microscope (HRTEM) images of natural and synthetic nanodiamonds, that the diffraction features attributed to the reported polymorphs are consistent with c-diamond containing abundant defects. Combinations of {113} reflection and <011> rotation twins produce HRTEM images and d-spacings that match those attributed to h-, i-, and m-diamond. The diagnostic features of n-diamond in TEM images can arise from thickness effects of c-diamonds. Our data and interpretations strongly suggest that the reported nanodiamond polymorphs are in fact twinned c-diamond. We also report a new type of twin (<11> rotational), which can give rise to grains with dodecagonal symmetry. Our results show that twins are widespread in diamond nanocrystals. A high density of twins could strongly influence their applications.
机译:h-,i-,m-和n-纳米金刚石多晶型物的异常物理性质和形成条件导致它们在材料和行星科学文献中受到了广泛关注。它们的识别基于普通立方(c-)金刚石(空间群:Fd-3m)中不存在的衍射特征。我们显示,使用天然和合成纳米金刚石的超高分辨率透射电子显微镜(HRTEM)图像,归因于报道的多晶型物的衍射特征与包含大量缺陷的c金刚石一致。 {113}反射和<011>旋转孪生的组合产生的HRTEM图像和d间隔与归因于h,i和m金刚石的图像匹配。 TEM图像中n金刚石的诊断特征可能来自c金刚石的厚度效应。我们的数据和解释强烈表明,所报道的纳米金刚石多晶型物实际上是孪晶c-金刚石。我们还报告了一种新型的孪晶(<11>旋转),它可以产生具有十二边形对称性的晶粒。我们的结果表明,孪晶广泛存在于金刚石纳米晶体中。高密度的双胞胎可能会强烈影响其应用。

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