Institute of Functional Material Chemistry, Faculty of Chemistry, Northeast Normal University, Changchun 130024, Jilin, P. R. China.
Chemphyschem. 2012 Apr 10;13(5):1232-9. doi: 10.1002/cphc.201100774. Epub 2012 Feb 2.
Drying-tube-shaped single-walled carbon nanotubes (SWCNTs) with multiple carbon ad-dimer (CD) defects are obtained from armchair (n,n,m) SWCNTs (n=4, 5, 6, 7, 8; m=7, 13). According to the isolated-pentagon rule (IPR) the drying-tube-shaped SWCNTs are unstable non-IPR species, and their hydrogenated, fluorinated, and chlorinated derivatives are investigated. Interestingly, chemisorptions of hydrogen, fluorine, and chlorine atoms on the drying tube-shaped SWCNTs are exothermic processes. Compared to the reaction energies for binding of H, F, and Cl atoms to perfect and Stone-Wales-defective armchair (5,5) nanotubes, binding of F with the multiply CD defective SWCNTs is stronger than with perfect and Stone-Wales-defective nanotubes. The reaction energy for per F(2) addition is between 85 and 88 kcal mol(-1) more negative than that per H(2) addition. Electronic structure analysis of their energy gaps shows that the CD defects have a tendency to decrease the energy gap from 1.98-2.52 to 0.80-1.17 eV. After hydrogenation, fluorination, and chlorination, the energy gaps of the drying-tube-shaped SWCNTs with multiple CD defects are substantially increased to 1.65-3.85 eV. Furthermore, analyses of thermodynamic stability and nucleus-independent chemical shifts (NICS) are performed to analyze the stability of these molecules.
具有多个碳二聚体 (CD) 缺陷的干燥管形单壁碳纳米管 (SWCNTs) 是从扶手椅 (n, n, m) SWCNTs (n=4, 5, 6, 7, 8; m=7, 13) 中获得的。根据孤立五边形规则 (IPR),干燥管形 SWCNTs 是不稳定的非 IPR 物种,并且研究了它们的氢化、氟化和氯化衍生物。有趣的是,氢、氟和氯原子在干燥管形 SWCNTs 上的化学吸附是放热过程。与 H、F 和 Cl 原子与完美和 Stone-Wales 缺陷扶手椅 (5,5) 纳米管结合的反应能相比,F 与具有多个 CD 缺陷的 SWCNTs 的结合比与完美和 Stone-Wales 缺陷纳米管的结合更强。每个 F(2) 添加的反应能比每个 H(2) 添加的反应能更负 85-88 kcal mol(-1)。对其能隙的电子结构分析表明,CD 缺陷具有使能隙从 1.98-2.52 降低到 0.80-1.17 eV 的趋势。经过氢化、氟化和氯化处理后,具有多个 CD 缺陷的干燥管形 SWCNTs 的能隙大大增加到 1.65-3.85 eV。此外,还进行了热力学稳定性和核独立化学位移 (NICS) 的分析,以分析这些分子的稳定性。