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硅和钛醇盐的水解和缩合反应机理的理论研究:相似与不同。

Theoretical study of the mechanisms of the hydrolysis and condensation reactions of silicon and titanium alkoxides: similarities and differences.

机构信息

Department of Chemistry, Radiochemistry Laboratory, St. Petersburg State University, St. Petersburg, 199034, Russia.

出版信息

Dalton Trans. 2010 Aug 14;39(30):6967-73. doi: 10.1039/c002397c. Epub 2010 Jun 22.

DOI:10.1039/c002397c
PMID:20571685
Abstract

Stationary states for hydrolysis reactions in M(OCH(3))(4) + nH(2)O (M = Si, Ti; n = 1-3) systems are optimized at the B3LYP and MP2 levels with the Wachters basis set for titanium and the cc-pVDZ set for other atoms. Geometries of these states for M = Ti are characterized by trigonal bipyramidal (water molecules in front-side position) and octahedral coordination (for back-side position). Barrier heights for hydrolysis and condensation are substantially lower than those for silicon in keeping with experimental results. The lowering of the barrier heights on the addition of water molecules in the front-side position (reduction of hydrogen bond strain) exceeds that of the back-side addition (catalytic effect) for both M = Si and Ti, but the difference diminishes with n. The influence of oligomerization of titanium alkoxides on the rate of hydrolysis is studied on the model of the interaction of a Ti(2)(OCH(3))(8) dimer with one and two water molecules. It was shown that only terminal methoxy groups are exposed to hydrolysis and therefore the dimeric structure is retained in the process of the substitution of terminal methoxy groups. Barrier heights for terminal hydrolysis do not differ significantly from those of monomers. Barrier heights for condensation reactions obtained for the 2M(OMe)(n)(OH)(4-n) + H(2)O model system, are substantially (by ca. 10 kcal mol(-1)) lower for M = Ti and in both silicon and titanium species demonstrate a steady growth with n.

摘要

在 M(OCH(3))(4) + nH(2)O (M = Si, Ti; n = 1-3) 体系中水解反应的稳定态在 B3LYP 和 MP2 水平下,使用 Wachters 基组对钛进行优化,对其他原子使用 cc-pVDZ 集。这些 M = Ti 状态的几何形状具有三角双锥(水分子处于前侧位置)和八面体配位(后侧位置)。水解和缩合的势垒高度远低于硅,符合实验结果。在添加水分子时,前侧位置(减少氢键应变)的势垒高度降低超过后侧位置(催化效应)的降低,对于 Si 和 Ti 都是如此,但随着 n 的增加,差异会减小。研究了钛醇盐的低聚物对水解速率的影响,其模型为 Ti(2)(OCH(3))(8) 二聚体与一个和两个水分子的相互作用。结果表明,只有末端甲氧基基团暴露于水解,因此在取代末端甲氧基基团的过程中保持二聚体结构。末端水解的势垒高度与单体的势垒高度没有显著差异。对于 2M(OMe)(n)(OH)(4-n) + H(2)O 模型体系,获得的缩合反应势垒高度对于 M = Ti 来说显著降低(约 10 kcal mol(-1)),并且在硅和钛两种物质中都随着 n 的增加而稳定增长。

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