High-pressure formation and characterization of a boron carbide polymorph featuring bent C–B–C chains

材料科学 表征(材料科学) 碳化硼 结晶学 碳化物 弯曲分子几何 晶体结构 X射线晶体学 多态性(计算机科学) 化学工程 Crystal(编程语言) 单晶 固溶体
作者
Anonymous,Umbertoluca Ranieri,James Spender,Charles Lamb,Sarah Bolton,Bernhard Massani,Ryan Stewart McWilliams,Timofey Fedotenko,Konstantin Glazyrin,Nico Giordano,Jonathan Wright,Florian Trybel,Dominique Laniel
出处
期刊:Physical review [American Physical Society]
卷期号:113 (10)
标识
DOI:10.1103/v5kf-svcz
摘要

Boron carbide is a material of choice for multiple industries, e.g., aerospace, as a lightweight structural ceramic due to its high hardness, high melting temperature, and low density. However, its mechanical properties have been observed to radically degrade under shockwave compression, presumably as a consequence of stress-induced phase transitions resulting in its partial amorphization. So far, the physical mechanism underpinning this behavior remains unclear. Here, we report a pressure-induced phase transition in boron carbide occurring between 78 and 90 GPa during static compression in diamond anvil cells, both at room temperature and after quenching from high temperatures. The crystal structure of the new phase was solved and refined via synchrotron single-crystal x-ray diffraction measurements and further investigated by Raman spectroscopy as well as density functional theory calculations. The discovered high-pressure polymorph, mC 60 B 13 C 2 , has strong resemblance with the known ambient conditions phase, hR 45 B 13 C 2 , with the important distinction that the linear C–B–C chain linking B 12 icosahedra in hR 45 B 13 C 2 is bent in mC 60 B 13 C 2 . Such bending of the C–B–C chain has been hypothesized as key to explain boron carbide's drop in strength, phase transitions, and amorphization. The observed reversibility of the phase transition, as well as the formation of covalent bonds between B 12 icosahedra and the bent C–B–C chains, are assessed to decipher the C–B–C chain's bending importance on the amorphization and mechanical properties of boron carbide.
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