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Pressure induced polymerization of acetylide anions in CaC2 and 107 fold enhancement of electrical conductivity

机译:CaC2中压力诱导的乙炔根阴离子聚合电导率提高107倍

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摘要

Transformation between different types of carbon–carbon bonding in carbides often results in a dramatic change of physical and chemical properties. Under external pressure, unsaturated carbon atoms form new covalent bonds regardless of the electrostatic repulsion. It was predicted that calcium acetylide (also known as calcium carbide, CaC2) polymerizes to form calcium polyacetylide, calcium polyacenide and calcium graphenide under high pressure. In this work, the phase transitions of CaC2 under external pressure were systematically investigated, and the amorphous phase was studied in detail for the first time. Polycarbide anions like C6 6– are identified with gas chromatography-mass spectrometry and several other techniques, which evidences the pressure induced polymerization of the acetylide anions and suggests the existence of the polyacenide fragment. Additionally, the process of polymerization is accompanied with a 107 fold enhancement of the electrical conductivity. The polymerization of acetylide anions demonstrates that high pressure compression is a viable route to synthesize novel metal polycarbides and materials with extended carbon networks, while shedding light on the synthesis of more complicated metal organics.
机译:碳化物中不同类型的碳-碳键之间的转换通常会导致物理和化学性质发生巨大变化。在外部压力下,不饱和碳原子会形成新的共价键,而与静电排斥无关。据预测,乙炔化钙(也称为碳化钙,CaC2)在高压下聚合形成聚乙炔化钙,聚ac烯化钙和石墨烯化钙。在这项工作中,系统地研究了CaC2在外部压力下的相变,并且首次详细研究了非晶相。诸如C6 6-的多聚阴离子是通过气相色谱-质谱法和其他几种技术鉴定的,这证明了压力诱导的乙炔阴离子的聚合反应,并暗示了ac烯片段的存在。另外,聚合过程伴随着电导率的10 7 增强。乙炔根阴离子的聚合反应表明,高压压缩是合成新型金属聚碳酸酯和具有扩展碳网络的材料的可行途径,同时为合成更复杂的金属有机物提供了参考。

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