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Supramolecular recognition: association of palladium molecular clefts with planar platinum complexes

机译:超分子识别:钯分子裂隙与平面铂络合物的关联

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The crystal structures of two new molecular recognition adducts formed between a dicationic, di-terpyridyl-Pd-Cl molecular cleft and two square planar platinum complexes are reported. In both structures, the planar platinum-containing guests are located within the molecular cleft formed by the two parallel disposed terpyridyl-Pd-Cl+ units of the receptor. The crystal structure of the adduct formed between the molecular cleft and a neutral platinum complex has interplanar distances between the host and guest of 3.24 Angstrom, a distance shorter than that usually ascribed to pi-stacking interaction (similar to3.45 Angstrom). The short distance is likely the result of metal-metal interaction between the host and guest. The second adduct, that between the dicationic molecular receptor and an anionic platinum complex, also bears the guest within the molecular cleft. The interplanar distances between the cationic terpyridyi-Pd-Cl units of the host and the anionic guest (3.21 and 3.29 Angstrom) are also shorter than typical pi-stacking distances but no metal-metal interaction is present. Coulombic attraction between the host and guest is believed to be responsible for the short interplanar separation. These data are discussed in relation to analogous systems that associate through pi-pi and metal-metal interaction. (C) 2004 Elsevier B.V. All rights reserved.
机译:报道了在双键的二叔吡啶基-Pd-Cl分子裂隙和两个方形的平面铂络合物之间形成的两个新的分子识别加合物的晶体结构。在两种结构中,平面的含铂客体位于由受体的两个平行布置的叔吡啶基-Pd-Cl +单元形成的分子裂隙内。在分子裂隙和中性铂络合物之间形成的加合物的晶体结构在主体和客体之间的晶面距离为3.24埃,该距离比通常归因于π堆积相互作用的距离短(类似于3.45埃)。距离短可能是主机和来宾之间金属与金属相互作用的结果。第二种加合物,即双键分子受体和阴离子铂络合物之间,也将客体留在分子裂隙内。主体的阳离子三联吡啶-Pd-Cl单元与阴离子客体之间的晶面距离(3.21和3.29埃)也比典型的pi堆积距离短,但没有金属与金属的相互作用。据信主体与客体之间的库仑吸引作用是造成短平面间距的原因。讨论了有关通过pi-pi和金属-金属相互作用关联的类似系统的这些数据。 (C)2004 Elsevier B.V.保留所有权利。

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