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Structural Stability and Deformation of Solvated Sm@C2(45)-C90 under High Pressure

机译:高压下溶剂化Sm @ C2(45)-C90的结构稳定性和变形

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摘要

Solvated fullerenes recently have been shown to exhibit novel compression behaviors compared with the pristine fullerenes. However, less attention has been focused on the large cage endohedral metallofullerenes. Here, we have firstly synthesized solvated Sm@C90 microrods by a solution drop-drying method, and then studied the transformations under high pressure. The pressure-induced structural evolutions of Sm@C90 molecules both undergo deformation and collapse. The band gaps of both samples decrease with increasing pressure. The trapped Sm atom plays a role in restraining the compression of the adjacent bonds. The solvent plays a role in protecting Sm@C90 against collapse in the region of 12–20 GPa, decreasing and postponing the change of band gap. Above 30 GPa, the carbon cages collapse. Released from 45 GPa, the compressed solvated Sm@C90 forms a new ordered amorphous carbon cluster (OACC) structure with metal atoms trapped in the units of amorphous carbon clusters, which is different from the OACC structure formed by compressing solvated C60 and C70. This discovery opens the door for the creation of new carbon materials with desirable structural and physical properties when suitable starting materials are selected.
机译:与原始的富勒烯相比,最近已显示溶剂化的富勒烯表现出新颖的压缩行为。然而,较少的注意力集中在大笼内面金属富勒烯上。在这里,我们首先通过溶液滴干法合成了溶剂化的Sm @ C90微棒,然后研究了在高压下的转化。压力诱导的Sm @ C90分子的结构演化既发生变形又崩溃。两个样品的带隙都随着压力的增加而减小。被捕获的Sm原子在抑制相邻键的压缩中起作用。溶剂在防止Sm @ C90在12–20 GPa的范围内塌陷,减少和推迟带隙变化方面发挥作用。高于30 GPa,碳笼塌陷。从45 GPa释放出来,压缩的Sm @ C90溶剂化形成新的有序无定形碳簇(OACC)结构,金属原子被捕获在无定形碳簇的单元中,这与通过压缩溶剂化的C60和C70形成的OACC结构不同。当选择合适的原材料时,这一发现为创建具有所需结构和物理性能的新型碳材料打开了大门。

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