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无定形二氧化硅类二氧化碳。

Amorphous silica-like carbon dioxide.

作者信息

Santoro Mario, Gorelli Federico A, Bini Roberto, Ruocco Giancarlo, Scandolo Sandro, Crichton Wilson A

机构信息

LENS, European Laboratory for Non-linear Spectroscopy and INFM, Via N. Carrara 1, I-50019 Sesto Fiorentino, Firenze, Italy.

出版信息

Nature. 2006 Jun 15;441(7095):857-60. doi: 10.1038/nature04879.

Abstract

Among the group IV elements, only carbon forms stable double bonds with oxygen at ambient conditions. At variance with silica and germania, the non-molecular single-bonded crystalline form of carbon dioxide, phase V, only exists at high pressure. The amorphous forms of silica (a-SiO2) and germania (a-GeO2) are well known at ambient conditions; however, the amorphous, non-molecular form of CO2 has so far been described only as a result of first-principles simulations. Here we report the synthesis of an amorphous, silica-like form of carbon dioxide, a-CO2, which we call 'a-carbonia'. The compression of the molecular phase III of CO2 between 40 and 48 GPa at room temperature initiated the transformation to the non-molecular amorphous phase. Infrared spectra measured at temperatures up to 680 K show the progressive formation of C-O single bonds and the simultaneous disappearance of all molecular signatures. Furthermore, state-of-the-art Raman and synchrotron X-ray diffraction measurements on temperature-quenched samples confirm the amorphous character of the material. Comparison with vibrational and diffraction data for a-SiO2 and a-GeO2, as well as with the structure factor calculated for the a-CO2 sample obtained by first-principles molecular dynamics, shows that a-CO2 is structurally homologous to the other group IV dioxide glasses. We therefore conclude that the class of archetypal network-forming disordered systems, including a-SiO2, a-GeO2 and water, must be extended to include a-CO2.

摘要

在第IV族元素中,只有碳在环境条件下能与氧形成稳定的双键。与二氧化硅和二氧化锗不同,二氧化碳的非分子单键晶体形式——V相,只在高压下存在。二氧化硅(a-SiO₂)和二氧化锗(a-GeO₂)的非晶态形式在环境条件下是众所周知的;然而,二氧化碳的非晶态、非分子形式迄今为止仅通过第一性原理模拟得到描述。在此,我们报告了一种非晶态、类似二氧化硅的二氧化碳形式——a-CO₂的合成,我们将其称为“a-碳酸”。在室温下将二氧化碳的分子III相在40至48吉帕之间压缩引发了向非分子非晶相的转变。在高达680 K的温度下测量的红外光谱显示C-O单键逐渐形成,同时所有分子特征消失。此外,对温度猝灭样品进行的先进拉曼光谱和同步加速器X射线衍射测量证实了该材料的非晶特性。与a-SiO₂和a-GeO₂的振动和衍射数据以及通过第一性原理分子动力学获得的a-CO₂样品计算的结构因子进行比较,表明a-CO₂在结构上与其他第IV族二氧化物玻璃同源。因此,我们得出结论,包括a-SiO₂、a-GeO₂和水在内的典型网络形成无序系统类别必须扩展到包括a-CO₂。

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