碳纤维
无定形碳
材料科学
拉曼光谱
化学物理
相变
休克(循环)
化学工程
纳米技术
无定形固体
复合材料
热力学
结晶学
复合数
化学
物理
医学
内科学
光学
工程类
作者
Sivakumar Aswathappa,Lidong Dai,S. Sahaya Jude Dhas,Raju Suresh Kumar
摘要
Carbon is nothing less than a rock star in the world of research on allotropes which has a tremendous ability to form several simple and complex allotropic structures of various sp, sp2 and sp3 hybridizations, thanks to its flexible chemical structure. By high-pressure experimental and theoretical approaches, new carbon forms were synthesized from known carbon structures. Herein, we report the phase transition from amorphous carbon nanoparticles to a novel thermodynamically stable carbon allotropic structure, denominated as SD carbon (Sivakumar-Dai carbon), obtained through the impact of acoustic shock waves with a transient pressure of 16.5 MPa. The SD carbon exhibits a couple of Raman bands at 482 and 2431 cm-1 with mixed sp2 and sp3 hybridizations belonging to the non-layered structural type and the formation of the SD carbon mechanism has been proposed based on the thermal conductivity driven super-heating approach. The structure will offer platforms that may pave the way for several novel carbon structures at low shock pressures compared to conventional static pressure compression and other techniques.
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