首页> 外文期刊>The Journal of Chemical Physics >Quantum chemical replica-exchange umbrella sampling molecular dynamics simulation reveal the formation mechanism of iron phthalocyanine iron and phthalonitrile
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Quantum chemical replica-exchange umbrella sampling molecular dynamics simulation reveal the formation mechanism of iron phthalocyanine iron and phthalonitrile

机译:量子化学复制品 - 交换伞采样分子动力学仿真揭示了铁酞菁铁的形成机制和酞菁

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Phthalocyanine (Pc) and its metal complexes (MPcs) have been used industrially since their discovery in the early 20th century. The phthalonitrile (PN) method is a well-known synthesis method in which Pc or MPc can be afforded by heating a mixture of PN and metal powders over 280 degrees C with only moderate yield. However, the formation mechanism of the phthalocyanines and the intermediate stages of this seemingly simple reaction have yet to be fully understood. To study this mechanism computationally, we carried out quantum chemical molecular dynamics (MD) simulations based on the density-functional tight-binding (DFTB) method, applying the replica-exchange umbrella sampling (REUS) method, starting from four PN molecules and one iron atom. The DFTB-REUS-MD simulations successfully yielded FePc, and a metastable structure very similar to FePc but with a reactive nitrene unit was also identified that might explain the incomplete conversion of the reactants into FePc. Analysis of the MD trajectories reveals a three-step FePc formation mechanism for the PN method. Published by AIP Publishing.
机译:酞菁(PC)和它的金属络合物器(MPC)已自其在20世纪初发现工业使用。邻苯二甲腈(PN)方法是一种公知的合成方法,其中,PC或MP的可通过在280℃下仅具有适中的产率PN和金属粉末的混合物加热承担。但是,酞菁和这看似简单的反应的中间阶段形成的机理还没有被完全理解。为了计算上研究这一机理,我们进行了基于密度官能紧密结合(DFTB)方法量子化学分子动力学(MD)模拟,在施加复制交换伞采样(REUS)方法,从四个PN分子和一个起始铁原子。所述DFTB-REUS-MD模拟成功产生的FePc,和亚稳结构非常相似的FePc但与反应性氮烯单元也被确定可能解释的反应物引入酞菁铁的不完全转化。在MD轨迹的分析揭示了该PN方法的三个步骤的FePc形成机制。通过AIP发布发布。

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