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共价固体氮化碳的实验实现。

Experimental realization of the covalent solid carbon nitride.

出版信息

Science. 1993 Jul 16;261(5119):334-7. doi: 10.1126/science.261.5119.334.

Abstract

Pulsed laser ablation of graphite targets combined with an intense, atomic nitrogen source has been used to prepare C-N thin film materials. The average nitrogen content in the films was systematically varied by controlling atomic nitrogen flux. Rutherford backscattering measurements show that up to 40 percent nitrogen can be incorporated on average into these solids under the present reaction conditions. Photoelectron spectroscopy further indicates that carbon and nitrogen form an unpolarized covalent bond in these C-N materials. Qualitative tests indicate that the C-N solids are thermally robust and hard. In addition, strong electron diffraction is observed from crystallites within the films. Notably, analysis of these diffraction data show that the only viable structure for the C-N crystallites is that of beta-C(3)N(4), a material predicted theoretically to exhibit superhardness. The experimental synthesis of this new C-N material offers exciting prospects for both basic research and engineering applications.

摘要

采用脉冲激光烧蚀石墨靶材并结合强原子氮源的方法制备了 C-N 薄膜材料。通过控制原子氮通量,系统地改变了薄膜中的平均氮含量。卢瑟福背散射测量表明,在目前的反应条件下,这些固体中平均可以掺入高达 40%的氮。光电子能谱进一步表明,在这些 C-N 材料中,碳和氮形成非极化的共价键。定性测试表明,C-N 固体具有热稳定性和硬度。此外,在薄膜中的晶粒中观察到强电子衍射。值得注意的是,对这些衍射数据的分析表明,C-N 晶粒唯一可行的结构是β-C(3)N(4),这是一种理论上预测具有超硬度的材料。这种新型 C-N 材料的实验合成为基础研究和工程应用提供了令人兴奋的前景。

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