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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Density functional theory studies of reaction mechanisms for titanium alkylamide incorporation onto functionalized aromatic self-assembled monolayers
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Density functional theory studies of reaction mechanisms for titanium alkylamide incorporation onto functionalized aromatic self-assembled monolayers

机译:烷基酰胺钛结合到功能化芳族自组装单分子层上的反应机理的密度泛函理论研究

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We have studied the reaction kinetics of the initial layer deposition of titanium- based alkylamide organometallic precursors on aromatic self- assembled monolayers ( SAMs) possessing different terminal groups. Using density functional theory and Moller - Plesset ( MP2) perturbation theory, we found the initial reaction rate constant for deposition to decrease in the order: OH>SH > NH2, similar to results we found previously for alkyl SAMs. Aromatic amine- and hydroxylterminated SAMs were kinetically and thermodynamically slightly more favorable than alkyl counterparts, with a very small ( 2 kcal mol (-1)) reduction in activation barrier. In contrast, the reactivity of thiol- terminated aromatic ligands was similar to corresponding alkyl SAMs due to the thiol group's small electronegativity. Branching on the surface functional group reduced the kinetic favorability of both aromatic and alkyl amine- terminated SAMs. Fluorine substitution in the aromatic backbone of amine- terminated SAMs is kinetically and thermodynamically much more favorable than corresponding unsubstituted aromatic SAMs and fluoryl- substituted alkyl SAMs. Investigation of the kinetics of several competing side unimolecular decomposition reactions led to the discovery of new kinetically favorable pathways that are competitive with transamination at temperatures as low as 250 K and which lead to a Ti : N ratio of 1 : 3 in agreement with experiments by Dube et al. ( A. Dube, A. R. Chadeayne, M. Sharma, P. T. Wolczanski and J. R. Engstrom, J. Am. Chem. Soc., 2005, 127, 14299 - 14309). Significant enhancement in kinetic favorability was shown to result from the steric hindrance of large groups.
机译:我们已经研究了钛基烷基酰胺有机金属前体在具有不同末端基团的芳族自组装单层(SAM)上初始层沉积的反应动力学。使用密度泛函理论和Moller-Plesset(MP2)扰动理论,我们发现沉积的初始反应速率常数按以下顺序降低:OH> SH> NH2,这与我们之前对烷基SAM的发现相似。芳香胺和羟基封端的SAM在动力学和热力学上都比烷基对应物稍好,活化屏障的降低非常小(2 kcal mol(-1))。相反,由于巯基的电负性小,因此巯基封端的芳族配体的反应性与相应的烷基SAM相似。表面官能团上的分支降低了芳族和烷基胺封端的SAM的动力学适应性。与相应的未取代的芳族SAM和氟取代的烷基SAM相比,胺端基的SAMs的芳族主链中的氟取代在动力学和热力学上更为有利。对几种竞争性单分子分解反应的动力学的研究导致发现了新的动力学上有利的途径,这些途径在低至250 K的温度下可与转氨反应竞争,并导致Ti:N比为1:3,与Dube等。 (A.Dube,A.R。Chadeayne,M.Sharma,P.T.Wolczanski和J.R.Engstrom,J.Am.Chem.Soc。,2005,127,14299-14309)。动力学喜好度的显着提高是由于大分子的位阻。

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