首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Methyl iodide oxidative addition to [Rh(acac)(CO)(PPh_3)]: An experimental and theoretical study of the stereochemistry of the products and the reaction mechanism
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Methyl iodide oxidative addition to [Rh(acac)(CO)(PPh_3)]: An experimental and theoretical study of the stereochemistry of the products and the reaction mechanism

机译:[Rh(acac)(CO)(PPh_3)]中碘甲烷的氧化加成反应:产物立体化学性质和反应机理的实验和理论研究

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摘要

Density functional theory was used to investigate the oxidative addition and subsequent carbonyl insertion and deinsertion steps of the reaction of methyl iodide to a rhodium(i) acetylacetonato complex of the formula [Rh(acac)(CO)(PPh_3)] (Hacac = acetylacetone). This process has been studied experimentally for many rhodium β-diketonato complexes, but, to the best of our knowledge, this is the first systematic computational study of the complete reaction sequence. Experimental 1H techniques complement the theoretical results on the stereochemistry of the reaction intermediates and products. 1H NMR also revealed the existence of a second rhodium(iii)-acyl product, which has not been previously observed in this reaction. The calculated Gibbs free energy of activation of the oxidative addition reaction is 71 kJ mol~(-1), which is in agreement with the experimental value of 82(1) kJ mol~(-1). The DFT-calculated oxidative addition corresponds to an associative S_N2 nucleophilic attack by the rhodium metal centre on the methyl iodide, which is in agreement with calculated and experimental (in brackets) activation parameters of the reaction, 27 (38.8) kJ mol~(-1) for ΔH~≠ and -147 (-146) J K~(-1) mol~(-1) for ΔS~≠.
机译:密度泛函理论用于研究甲基碘与式[Rh(acac)(CO)(PPh_3)]铑(i)乙酰丙酮基络合物的反应的氧化加成反应以及随后的羰基插入和去插入步骤(Hacac =乙酰丙酮)。已经对许多铑β-二酮酮络合物进行了实验研究,但是,就我们所知,这是对完整反应序列的首次系统计算研究。实验1H技术补充了有关反应中间体和产物的立体化学的理论结果。 1 H NMR还显示存在第二铑(iii)-酰基产物,该产物先前未在该反应中观察到。计算得出的氧化加成反应活化的吉布斯自由能为71 kJ mol〜(-1),与实验值82(1)kJ mol〜(-1)一致。 DFT计算的氧化加成对应于铑金属中心对甲基碘的缔合S_N2亲核攻击,与反应的计算和实验活化参数(在括号中)一致,为27(38.8)kJ mol〜(- 1)对于ΔH〜≠和-147(-146)JK〜(-1)mol〜(-1)对于ΔS〜≠。

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