The transition can be achieved by a combined effect of the broken mirror symmetry and bond formation between the flattened faces in the squashed nanotubes.
这种转变在两种因素的共同作用下得以发生,即外加压力造成碳纳米管镜像对称破缺,以及被压碳纳米管两侧原子发生成键相互作用。
The transition can be achieved by a combined effect of the broken mirror symmetry and bond formation between the flattened faces in the squashed nanotubes.
这种转变在两种因素的共同作用下得以发生,即外加压力造成碳纳米管镜像对称破缺,以及被压碳纳米管两侧原子发生成键相互作用。
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