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Encapsulation of Metal Cations by the PhePhe Ligand: A Cation-π Ion Cage

机译:PhePhe配体对金属阳离子的包封:Cation-π离子笼

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摘要

Structures and binding thermochemistry are investigated for protonated PhePhe and for complexes of PhePhe with the alkaline-earth ions Ba~(2+) and Ca~(2+), the alkali-metal ions Li~+, Na~+, K~+, and Cs~+, and the transition-metal ion Ag~+. The two neighboring aromatic side chains open the possibility of a novel encapsulation motif of the metal ion in a double cation—π configuration, which is found to be realized for the alkaline-earth complexes and, in a variant form, for the Ag~+ complex. Experimentally, complexes are formed by electrospray ionization, trapped in an FT-ICR mass spectrometer, and characterized by infrared multiple.photon dissociation (IRMPD) spectroscopy using the free electron laser FELIX. Interpretation is assisted by thermochemical and IR spectral calculations using density functional theory (DFT). The IRMPD spectrum of protonated PhePhe is reproduced with good fidelity by the calculated spectrum of the most stable conformation, although the additional presence of the secondmost stable conformation is not excluded. All metalion complexes have charge-solvated binding modes, with zwitterion (salt bridge) forms being much less stable. The amide oxygen always coordinates to the metal ion, as well as at least one phenyl ring (cation—π interaction). At least one additional chelation site is always occupied, which may be either the amino nitrogen or the carboxy carbonyl oxygen. The alkaline-earth complexes prefer a highly compact caged structure with both phenyl rings providing cation—π stabilization in a "sandwich" configuration (OORR chelation). The alkali-metal complexes prefer open-cage structures with only one cation—π interaction, except perhaps Cs~+. The Ag~+ complex shows a unique preference for the closed-cage amino-bound NORR structure. Ligand-driven perturbations of normal-mode frequencies are generally found to correlate linearly with metal-ion binding energy.
机译:研究了质子化PhePhe的结构和结合热化学以及PhePhe与碱土离子Ba〜(2+)和Ca〜(2+),碱金属离子Li〜+,Na〜+,K〜+的配合物,Cs〜+和过渡金属离子Ag〜+。两条相邻的芳族侧链开辟了双阳离子-π构型的金属离子新的包封基序的可能性,发现这对于碱土配合物以及在变体形式中对于Ag〜+复杂。实验上,通过电喷雾电离形成复合物,将其捕获在FT-ICR质谱仪中,并使用自由电子激光FELIX通过红外多光子离解(IRMPD)光谱进行表征。使用密度泛函理论(DFT)的热化学和红外光谱计算有助于解释。质子化的PhePhe的IRMPD光谱通过最稳定构象的计算光谱以良好的保真度再现,尽管不排除第二稳定构象的额外存在。所有金属离子络合物均具有电荷溶解的结合模式,两性离子(盐桥)形式的稳定性较差。酰胺氧总是与金属离子以及至少一个苯环配位(阳离子-π相互作用)。总是占据至少一个另外的螯合位点,其可以是氨基氮或羧基羰基氧。碱土配合物更喜欢具有两个苯环的高度紧凑的笼状结构,以“三明治”构型(OORR螯合)提供阳离子-π稳定性。碱金属配合物更喜欢只有一个阳离子-π相互作用的开笼结构,也许除了Cs〜+。 Ag +复合物显示了对封闭笼式氨基结合的NORR结构的独特偏好。通常发现,正常模式频率的配体驱动扰动与金属离子结合能线性相关。

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  • 来源
    《Journal of the American Chemical Society》 |2011年第24期|p.9376-9386|共11页
  • 作者单位

    Chemistry Department, Case Western Reserve University, Cleveland, Ohio 44106, United States;

    FOM-Institute for Plasma Physics Rijnhuizen, Edisonbaan 14, NL-3439 MN Nieuwegein, The Netherlands,Sandia/California, 7011 East Avenue, Livermore, CA 94551-0969.;

    FOM-Institute for Plasma Physics Rijnhuizen, Edisonbaan 14, NL-3439 MN Nieuwegein, The Netherlands,University of Amsterdam, Science Park 904, 1098 XH Amsterdam, The Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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