Wang Lu, Huang Xiaoli, Li Da, Huang Yanping, Bao Kuo, Li Fangfei, Wu Gang, Liu Bingbing, Cui Tian
State Key Laboratory of Superhard Materials, College of Physics, Jilin University, Changchun 130012, People's Republic of China.
J Chem Phys. 2016 May 21;144(19):194506. doi: 10.1063/1.4948705.
The high pressure structural changes of calcium carbide CaC2 have been investigated with Raman spectroscopy and synchrotron X-ray diffraction (XRD) techniques in a diamond anvil cell at room temperature. At ambient conditions, two forms of CaC2 co-exist. Above 4.9 GPa, monoclinic CaC2-ii diminished indicating the structural phase transition from CaC2-ii to CaC2-i. At about 7.0 GPa, both XRD patterns and Raman spectra confirmed that CaC2-i transforms into a metallic Cmcm structure which contains polymeric carbon chains. Along with the phase transition, the isolated C2 dumbbells are polymerized into zigzag chains resulting in a large volume collapse with 22.4%. Above 30.0 GPa, the XRD patterns of CaC2 become featureless and remain featureless upon decompression, suggesting an irreversible amorphization of CaC2.
在室温下,利用拉曼光谱和同步辐射X射线衍射(XRD)技术,在金刚石对顶砧中研究了碳化钙(CaC₂)的高压结构变化。在常压条件下,两种形式的CaC₂共存。在4.9 GPa以上,单斜晶系的CaC₂ - ii减少,表明从CaC₂ - ii到CaC₂ - i的结构相变。在约7.0 GPa时,XRD图谱和拉曼光谱均证实CaC₂ - i转变为含有聚合碳链的金属Cmcm结构。随着相变,孤立的C₂哑铃形分子聚合成锯齿链,导致22.4%的大幅体积收缩。在30.0 GPa以上,CaC₂的XRD图谱变得无特征,解压后仍无特征,表明CaC₂发生了不可逆的非晶化。