Yamamoto Takuya, Fukushima Takanori, Yamamoto Yohei, Kosaka Atsuko, Jin Wusong, Ishii Noriyuki, Aida Takuzo
ERATO-SORST Nanospace Project, Japan Science and Technology Agency (JST), National Museum of Emerging Science and Innovation, 2-41 Aomi, Koto-ku, Tokyo 135-0064, Japan.
J Am Chem Soc. 2006 Nov 8;128(44):14337-40. doi: 10.1021/ja064461h.
Newly designed norbornene-appended hexabenzocoronene 1 self-assembles, upon diffusion of an Et(2)O vapor into its CH(2)Cl(2) solution, to form either graphitic nanocoils or nanotubes, depending on the self-assembling conditions. The coiled assembly, selectively formed at 15 degrees C, is a kinetic intermediate for the tubular assembly and transforms into nanotubes on standing at 25 degrees C. However, post-ring-opening metathesis polymerization of the norbornene pendants of 1 enhances the thermal stability of the coiled assembly as well as the tubular one and disables a thermodynamic coil-to-tube transition. The polymerized nanocoils show an electroconductivity of 1 x 10(-)(4) S cm(-)(1) upon doping with I(2), while the nonpolymerized nanocoils are disrupted upon being doped.
新设计的带有降冰片烯的六苯并蔻1在Et(2)O蒸汽扩散到其CH(2)Cl(2)溶液中时会自组装,根据自组装条件形成石墨纳米线圈或纳米管。在15摄氏度下选择性形成的盘绕组装体是管状组装体的动力学中间体,在25摄氏度下静置时会转变为纳米管。然而,1的降冰片烯侧基的开环易位聚合反应增强了盘绕组装体以及管状组装体的热稳定性,并阻止了从热力学角度的线圈到管的转变。聚合后的纳米线圈在掺杂I(2)后显示出1×10(-)(4) S cm(-)(1)的电导率,而未聚合的纳米线圈在掺杂时会被破坏。