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Carbon chains and the (5,5) single-walled nanotube: Structure and energetics versus length

机译:碳链和(5,5)单壁纳米管:结构和能量与长度的关系

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Reliable thermochemistry is computed for infinite stretches of pure-carbon materials including acetylenic and cumulenic carbon chains,graphene sheet,and single-walled carbon nanotubes (SWCNTs) by connection to the properties of finite size molecules that grow into the infinitely long systems.Using ab initio G3 theory,the infinite cumulenic chain (:C=C=C=C:) is found to be 1.9+-0.4 kcal/mol per carbon less stable in free energy at room temperature than the acetylenic chain (~(centre dot)C ident to C-C ident to C~(centre dot)) which is 24.0 kcal/mol less stable than graphite.The difference between carbon-carbon triple,double,and single bond lengths (1.257,1.279,and 1.333 A,respectively) in infinite chains is evident but much less than with small hydrocarbon molecules.These results are used to evaluate the efficacy of similar calculations with the less rigorous PM3 semiempirical method on the (5,5) SWCNT,which is too large to be studied with high-level ab initio methods.The equilibrium electronic energy change for C(g)->C[infmite (5,5) SWCNT] is -166.7 kcal/mol,while the corresponding free energy change at room temperature is -153.3 kcal/mol (6.7 kcal/mol less stable than graphite).A threefold alternation (6.866,6.866,and 6.823 A) in the ring diameter of the equilibrium structure of infinitely long (5,5) SWCNT is apparent,although the stability of this structure over the constant diameter structure is small compared to the zero point energy of the nanotube.In general,different (n,m) SWCNTs have different infinite tube energetics,as well as very different energetic trends that vary significantly with length,diameter,and capping.
机译:通过与生长到无限长系统中的有限大小分子的性质相关联,可以计算出无限延伸的纯碳材料(包括炔烃和枯草碳链,石墨烯片和单壁碳纳米管(SWCNT))的可靠热化学。从G3理论开始,发现无穷积积链(:C = C = C = C :)为1.9 + -0.4 kcal / mol /碳,在室温下其自由能中的稳定性低于炔链(〜(中心点) C恒到C恒到C〜(中心点),比石墨稳定24.0 kcal / mol。碳-碳三键,双键和单键长度之间的差异(分别为1.257、1.279和1.333 A)无穷链是明显的,但远小于使用小烃分子的结果。这些结果用于评估使用不太严格的PM3半经验方法对(5,5)SWCNT进行类似计算的效果,该方法太大,无法用高碳氢化合物进行研究。从头算的方法C(g)-> C [infmite(5,5)SWCNT]的电子能变化为-166.7 kcal / mol,而室温下相应的自由能变化为-153.3 kcal / mol(稳定度比6.7 kcal / mol低无限长(5,5)SWCNT的平衡结构的环直径上出现了三重交替(6.866、6.866和6.823 A),尽管与恒定直径结构相比,该结构的稳定性很小通常,不同的(n,m)SWCNT具有不同的无限管能量,并且能量的变化趋势也随长度,直径和封盖而变化很大。

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