Chemical Laboratory, Council of Scientific and Industrial Research-Central Leather Research Institute, Adyar, Chennai 600 020, India.
J Phys Chem A. 2012 Jun 14;116(23):5519-28. doi: 10.1021/jp210668b. Epub 2012 May 30.
In this study, the encapsulation of F(-) in different nanotubes (NTs) has been investigated using electronic structure calculations and Car-Parrinello molecular dynamics simulations. The carbon atoms in the single walled carbon nanotube (CNT) are systematically doped with B and N atoms. The effect of the encapsulation of F(-) in the boron nitride nanotube (BNNT) has also been investigated. Electronic structure calculations show that the (7,0) chirality nanotube forms a more stable endohedral complex (with F(-)) than the other nanotubes. Evidence obtained from the band structure of CNT calculations reveals that the band gap of the CNT is marginally affected by the encapsulation. However, the same encapsulation significantly changes the band gap of the BNNT. The density of states (DOS) derived from the calculations shows significant changes near the Fermi level. The snapshots obtained from the CPMD simulation highlight the fluctuation of the anion inside the tube and there is more fluctuation in BNNT than in CNT.
在这项研究中,使用电子结构计算和 Car-Parrinello 分子动力学模拟研究了 F(-)在不同纳米管(NTs)中的包封。对单壁碳纳米管(CNT)中的碳原子进行了系统的硼和氮原子掺杂。还研究了 F(-)在氮化硼纳米管(BNNT)中的包封效应。电子结构计算表明,(7,0)手性纳米管比其他纳米管形成更稳定的笼型(F(-))复合物。从 CNT 计算的能带结构中获得的证据表明,CNT 的能带隙受包封的影响很小。然而,相同的封装会显著改变 BNNT 的能带隙。从计算得出的态密度(DOS)在费米能级附近显示出显著的变化。CPMD 模拟获得的快照突出显示了阴离子在管内的波动,并且 BNNT 中的波动比 CNT 中的波动更大。