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Temperature dependence of the activity of a late transition metal catalyst by molecular modeling

机译:分子模型模拟晚过渡金属催化剂活性的温度依赖性

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A combination of molecular mechanics and the charge equilibration method was applied and further developed to predicting the catalyst activity of a metal complex. A late transition metal catalyst, {di-mu-bromotetra [N,N'-bis (3,5-dimethylanil)-4-methyl-2,6-bis(imino)phenoxy]nickel} bromide (MOL) was dealt with. A modified molecular force field from universal force field was set and validated for this system. Simulations predict that the activity of MOL varies little with temperature. Simulation results were in good agreement with experimental results for ethylene oligomerization with MOL. [References: 23]
机译:结合分子力学和电荷平衡方法,并将其进一步发展以预测金属络合物的催化剂活性。处理了一种后期过渡金属催化剂,{二甲基溴四[N,N'-双(3,5-二甲基苯胺)-4-甲基-2,6-双(亚氨基)苯氧基]镍}溴化物(MOL) 。设置了从通用力场修改的分子力场,并对该系统进行了验证。模拟预测,MOL的活性随温度变化很小。模拟结果与用MOL进行乙烯低聚的实验结果吻合良好。 [参考:23]

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