首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Pt(II) uptake by dendrimer outer pockets: 1. Solventless ligand exchange reaction
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Pt(II) uptake by dendrimer outer pockets: 1. Solventless ligand exchange reaction

机译:树枝状聚合物外口袋对Pt(II)的吸收:1.无溶剂配体交换反应

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Density functional theory is used to elucidate molecular-level details of the complexation of Pt(II) metal compounds with PAMAM dendrimers. Particular attention is given to the ligand exchange reaction (LER). Binding of Pt(II) complexes to one dendrimer atom site (monodentate binding) is found to be thermodynamically feasible. Tertiary amine nitrogen (N3) is found to be the most favorable binding site in agreement with previous experimental work. Comparing the binding of Pt(II) species to atom sites in simple molecules with those to similar sites in dendrimer outer pockets allowed us to assess the impact of dendrimer branches on the binding. The impact of branches is manifested in more complex reaction profiles for complexation of Pt(II) species, because of the numerous ways in which a single molecule could be hosted by an outer dendrimer pocket. It is found that branches slightly improve the binding strength to all sites, particularly to N3. However, they could also be responsible for the increase of the activation energy for direct LER of PtCl42- and PtCl3(H2O)(-) at the N3 site. Considering the thermodynamics of both complexation steps, namely noncovalent binding (NCB) and LER, it is found that to have a PtCl3- Moiety bound to N3, as a result of NCB + LER operating PtCl42-, is more likely than to have any other ion hosted in the outer pockets. However, the activation energy for direct LER of PtCl42- at the N3 site is found to be the largest among all Pt(II) metal complexes and even larger than the barrier to its own aquation yielding PtCl3(H2O)(-).
机译:密度泛函理论用于阐明Pt(II)金属化合物与PAMAM树状聚合物的复合物的分子水平细节。特别注意配体交换反应(LER)。发现Pt(II)复合物与一个树枝状大分子原子位点的结合(单齿结合)在热力学上是可行的。与先前的实验工作一致,发现叔胺氮(N3)是最有利的结合位点。比较Pt(II)物种与简单分子中的原子位点的结合与与树枝状聚合物外袋中相似位点的结合,可以评估树枝状聚合物分支对结合的影响。支链的影响表现在用于Pt(II)物种络合的更复杂的反应曲线中,这是因为外部树枝状聚合物口袋可以承载单个分子的多种方式。发现分支略微提高了对所有位点,特别是对N3的结合强度。但是,它们也可能导致N3位的PtCl42-和PtCl3(H2O)(-)直接LER的活化能增加。考虑到两个络合步骤的热力学,即非共价结合(NCB)和LER,发现由于NCB + LER操作PtCl42-的结果,PtCl3-部分与N3结合的可能性比其他任何步骤都高离子位于外部口袋中。然而,发现在所有Pt(II)金属配合物中,PtCl42-在N3处的直接LER活化能最大,甚至大于生成PtCl3(H2O)(-)的水合势垒。

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