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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Surface directed reversible imidazole ligation to nickel(II) octaethylporphyrin at the solution/solid interface: a single molecule level study
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Surface directed reversible imidazole ligation to nickel(II) octaethylporphyrin at the solution/solid interface: a single molecule level study

机译:表面定向可逆咪唑在溶液/固体界面上与八乙基卟啉镍(II)的连接:单分子水平研究

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Scanning tunneling microscopy (STM) is used to study for the first time the reversible binding of imidazole (Im) and nickel(II) octaethylporphyrin (NiOEP) supported on highly oriented pyrolytic graphite (HOPG) at the phenyloctane/NiOEP/HOPG interface at 25 degrees C. The ligation of Im to the NiOEP receptor while not observed in fluid solution is readily realized at the solution/HOPG interface. The coordination process scales with increasing Im concentration and can be effectively modeled by the Langmuir isotherm. At room temperature it is determined that the standard free energy of adsorption is Delta G(c) = -15.8 kJ mol(-1) and the standard enthalpy of adsorption is estimated to be Delta H-c approximate to -80 kJ mol(-1). The reactivity of imidazole toward NiOEP adsorbed on HOPG is attributed to charge donation from the graphite stabilizing the Im-Ni bond. This charge transfer pathway is supported by molecular and periodic modeling calculations which indicate that the Im ligand behaves as a pi-acceptor. DFT calculations also show that the nickel ion in the Im-NiOEP/HOPG complex is in a singlet ground state. This is surprising since both our calculations and previous experimental studies find a triplet ground state for the five and six coordinated Im-nickel(II) porphyrins in the gas-phase or in solution. Both the experimental and the theoretical findings provide information that is useful for better understanding of chemical sensing/recognition and catalytic processes that utilize metal-organic complexes adsorbed on surfaces where the reactivity of the metal is moderated by the substrate.
机译:扫描隧道显微镜(STM)首次用于研究咪唑(Im)和八乙基卟啉镍(II)八面体卟啉镍(IIOEP)在高度定向的热解石墨(HOPG)上的可逆结合在25°C时的苯基辛烷/ NiOEP / HOPG界面在溶液/ HOPG界面很容易实现Im与NiOEP受体的连接,尽管在流体溶液中未观察到。配合过程随着Im浓度的增加而缩放,可以通过Langmuir等温线有效地建模。在室温下确定吸附的标准自由能为Delta G(c)= -15.8 kJ mol(-1),吸附的标准焓估计为Delta Hc约为-80 kJ mol(-1) 。咪唑对HOPG上吸附的NiOEP的反应性归因于稳定Im-Ni键的石墨提供的电荷。这种电荷转移途径受到分子和周期性建模计算的支持,这些计算表明Im配体表现为π受体。 DFT计算还表明,Im-NiOEP / HOPG络合物中的镍离子处于单重态。这是令人惊讶的,因为我们的计算和先前的实验研究都发现在气相或溶液中五和六种配位的Im-镍(II)卟啉的三重态基态。实验结果和理论发现均提供了有用的信息,可用于更好地理解化学感应/识别以及利用吸附在表面上的金属-有机络合物吸收的金属-有机络合物催化作用的催化过程。

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