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Principle and Mechanism of Direct Porphyrin Metalation: Joint Experimental and Theoretical Investigation

机译:卟啉直接金属化的原理和机理:联合实验和理论研究

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The direct metalation of tetraphenylporphyrin with bare metal atoms (Co and Zn) was studied with X-ray photoelectron spectroscopy, scanning tunneling microscopy, and temperature-programmed reaction measurements on ordered monolayer films of the molecules adsorbed on a Ag(111) surface. The mechanism of this novel type of surface reaction was investigated using density functional theory (DFT) calculations for the related gas-phase reactions of the unsubstituted porphyrin with the metals Fe, Co, Ni, Cu, and Zn. The reaction starts with the formation of an initial complex, in which the metal atom is coordinated by the intact unreduced porphyrin. This complex resembles the sitting-atop complex proposed for porphyrin metalation with metal ions in solution. In two subsequent steps, the pyrrolic hydrogen atoms are transferred to the metal atom, forming H_2, which is eventually released. The activation barriers of the H-transfer steps vary for the different metal atoms. DFT calculations suggest that metalations with Fe, Co, and Ni show two-state reactivity, while those with Cu and Zn proceed on a single potential energy surface. For metalation with Zn, we calculated a barrier of the first hydrogen transfer step of 32.6 kcal mol~(-1), in good agreement with the overall experimental activation energy of 31 kcal mol~(-1).
机译:用X射线光电子能谱,扫描隧道显微镜和程序升温法对吸附在Ag(111)表面的分子的有序单层膜研究了四苯基卟啉与裸金属原子(Co和Zn)的直接金属化。使用密度泛函理论(DFT)计算研究了这种新型表面反应的机理,用于未取代的卟啉与金属Fe,Co,Ni,Cu和Zn的相关气相反应。反应从形成初始配合物开始,其中金属原子由完整的未还原卟啉配位。该络合物类似于提议用于溶液中金属离子的卟啉金属化的坐立式络合物。在随后的两个步骤中,吡咯氢原子转移到金属原子上,形成H_2,最终将其释放出来。氢转移步骤的活化势垒因不同的金属原子而异。 DFT计算表明,具有Fe,Co和Ni的金属化具有两态反应性,而具有Cu和Zn的金属化则在单个势能面上进行。对于锌的金属化,我们计算出第一个氢转移步骤的势垒为32.6 kcal mol〜(-1),与31 kcal mol〜(-1)的总体实验活化能非常吻合。

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