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首页> 外文期刊>Acta Chimica Slovenica >Stabilizing of the Transitory Species (TiO2)(2) by Encapsulation Into Carbon Nanotubes
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Stabilizing of the Transitory Species (TiO2)(2) by Encapsulation Into Carbon Nanotubes

机译:通过封装到碳纳米管中来稳定暂时性物种(TiO2)(2)

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摘要

The aim of this paper is studying the encapsulation effect of carbon nanotubes (CNTs) on the stabilizing process of titanium dioxide molecule dimers (TiO2)(2). First, a theoretical study was performed concerning the guest species that are various titanium dioxide dimers. Five structures were treated as following: i) Cis (C) or ii)Trans (T) relatively to a square shaped fragment Ti2O2, iii) a mixed Tetrahedral/Pyramidal (T/P) disposition while two titanium atoms are sharing three oxygen atoms, and finally not bonded dimers in iv) parallel (P) and v) orthogonal (O) positions respectively. Only the (T), (C) and (T/P) isomers may be considered as stable compounds. The structure of the T-dimer is more stable than the Cis one by only 6.5 kcal mol(-1). Typically, intra and extracyclic Ti-O bond lengths are 1.84 angstrom and 1.61 angstrom respectively. (T/P) dimer can be described as a metastable structure since its energy is higher than (T) one by 19 kcal mol(-1). NBO analysis highlights the participation of dative bonding between oxygen lone pair and vacant titanium 3d orbitals. (P) and (0) structures represent transitory species that transform into the more stable structure which is the T-dimer. The second and principal part of this work concerns the re-optimization of the studied structures placed inside the CNT (12,0). Only (T), (C) and (P) dimers are stabilized by encapsulation through the establishment of strong interactions with the CNT wall. The (T / P) and (0) isomers which are converted into (T) and (P) dimers respectively, are leaving the nanotube while they still interacting with its edge. These favorable results are indicating in one hand the possibly detection of (T) and (C) isomers, and in another hand that the process of polymerization of the TiO2 molecule which is leading to nanostructured materials could be controlled by encapsulation within the CNTs.
机译:本文的目的是研究碳纳米管(CNTs)对二氧化钛分子二聚体(TiO2)(2)稳定化过程的封装作用。首先,对各种二氧化钛二聚体的客体进行了理论研究。五个结构的处理如下:i)相对于正方形片段Ti2O2的顺式(C)或ii)反式(T),iii)四面体/金字塔形(T / P)混合布置,而两个钛原子共享三个氧原子,最后在iv)平行(P)和v)正交(O)位置未键合二聚体。只有(T),(C)和(T / P)异构体可以被认为是稳定的化合物。 T-二聚体的结构比顺式更稳定,仅6.5 kcal mol(-1)。通常,环内和环外Ti-O键的长度分别为1.84埃和1.61埃。 (T / P)二聚体可以描述为亚稳结构,因为它的能量比(T)高19 kcal mol(-1)。 NBO分析强调氧孤对与空的3d钛轨道之间的键合参与。 (P)和(0)结构代表过渡物种,它们转变成更稳定的结构,即T-二聚体。这项工作的第二和主要部分涉及对置于CNT(12,0)内部的研究结构的重新优化。通过与CNT壁建立牢固的相互作用,通过封装仅稳定(T),(C)和(P)二聚体。分别转化为(T)和(P)二聚体的(T / P)和(0)异构体在仍与纳米管边缘相互作用的同时离开了纳米管。这些有利的结果一方面表明可能检测到(T)和(C)异构体,另一方面表明可以通过封装在CNT中来控制导致纳米结构材料的TiO2分子的聚合过程。

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