Institut für Chemie und Biochemie, Freie Universität, Takustr. 3, D-14195, Berlin, Germany.
Dalton Trans. 2011 Dec 7;40(45):12089-96. doi: 10.1039/c1dt10621j. Epub 2011 Jul 14.
3,3'-Bis(pyridin-[n]-ylethynyl)biphenyl (n = 3, 4) and the corresponding 2,2'-bipyridines assemble with (dppp)Pt(II) triflate into metallo-supramolecular polygons. Depending on the position of the terminal pyridine N atoms, the assembly reaction leads to different equilibrium products. With the slow ligand exchange on Pt(II) complexes, the equilibrium is reached on a many-hour time-scale. During the assembly process, larger polygons form under kinetic control. This was confirmed by time-dependent (1)H and (31)P NMR spectroscopy in line with complementary ESI mass spectrometric experiments. The constitutional difference in the pyridine N-atom position is reflected in the tandem mass spectra of the complex ions. In addition, a highly specific fragmentation process of mass-selected M(3)L(3) ions was observed, which proceeds through a ring contraction yielding smaller M(2)L(2) ions.
3,3'-双(吡啶[n]-基乙炔基)联苯(n = 3,4)和相应的 2,2'-联吡啶与(dppp)Pt(II)三氟甲磺酸酯组装成金属超分子多边形。根据末端吡啶 N 原子的位置,组装反应导致不同的平衡产物。由于 Pt(II)配合物上的配体交换缓慢,平衡在数小时的时间尺度上达到。在组装过程中,动力学控制下形成更大的多边形。这一点通过与补充 ESI 质谱实验相符的时变(1)H 和(31)P NMR 光谱得到了证实。吡啶 N-原子位置的结构差异反映在配合物离子的串联质谱中。此外,还观察到经过环收缩生成较小的 M(2)L(2)离子的高度特异性的质量选择 M(3)L(3)离子的碎裂过程。