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The formation and stability of junctions in single-wall carbon nanotubes

机译:单壁碳纳米管中连接的形成与稳定性

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The structure and stability of molecular junctions, which connect two single-wall carbon nanotubes (SWCNTs) of different diameters and chiral angles, (n(1), m(1))-(n(2), m(2)), are systematically investigated by density functional tight binding calculations. More than 100 junctions, which connect well-aligned SWCNTs, were constructed and calculated. For a highly stable junction between two chiral (n(1), m(1)) and (n(2), m(2)) SWCNTs with opposite handedness, the number of pentagon-heptagon (5/7) pairs required to build the junction can be denoted as vertical bar vertical bar n(2) - n(1)vertical bar - vertical bar m(2) - m(1)vertical bar vertical bar + min{vertical bar n(2) - n(1)vertical bar, vertical bar m(2) - m(1)vertical bar} with (n(2), m(2)) rotating pi/3 angle or not. While for a junction connected by two zigzag, armchair or two chiral SWCNTs with the same handedness, the number of 5/7 pairs is equal to vertical bar n(1) - n(2)vertical bar + vertical bar m(1) - m(2)vertical bar. Similar to the formation energies of grain boundaries in graphene, the curve of the formation energies vs. chiral angle difference present an 'M' shape indicating the preference of similar to 30 degree junctions. Moreover, the formation energies of the zigzag-type and armchair-type junctions with zero misorientation angles are largely sensitive to the diameter difference of two sub-SWCNTs.
机译:分子结的结构和稳定性,其连接不同直径的两个单壁碳纳米管(SWCNTs)和手性角,(n(1),m(1)) - (n(2),m(2)),通过密度功能紧密结合计算系统地研究。构建和计算连接良好的SWCNT的100多个连接。对于两种手性(N(1),M(1))和(N(2),M(2))之间的高度稳定的连接,具有相对的手性的SWCNT,所需的五角形 - 庚膜(5/7)对构建连接点可以表示为垂直条垂直条N(2) - N(1)垂直杆 - 垂直条M(2) - M(1)垂直条垂直条+ MIN {垂直条N(2) - n( 1)垂直杆,垂直条M(2) - M(1)垂直条}具有(n(2),m(2))旋转pi / 3角度。虽然对于通过两个锯齿形,扶手椅或两个手性SWCN连接的连接,但是5/7对的数量等于垂直条N(1) - N(2)垂直条+垂直条M(1) - M(2)垂直杆。类似于石墨烯中的晶界的形成能量,形成能量与手性角差的曲线存在于“M”形状,表示与30度交叉口类似的偏好。此外,Zigag型和扶手椅的形成能量与零错位角度的结在很大程度上对两个子SWCNT的直径差异很大。

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