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Supersnowflakes: Stepwise Self-Assembly and Dynamic Exchange of Rhombus Star-Shaped Supramolecules
With the goal of increasing the complexity of metallo-supramolecules, two rhombus star-shaped supramolecular architectures, namely, supersnowflakes, were designed and assembled using multiple 2,2′:6′,2″-terpyridine (tpy) ligands in a stepwise manner. In the design of multicomponent self-assembly, di...
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Published in: | Journal of the American Chemical Society 2017-06, Vol.139 (24), p.8174-8185 |
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container_title | Journal of the American Chemical Society |
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creator | Zhang, Zhe Wang, Heng Wang, Xu Li, Yiming Song, Bo Bolarinwa, Olapeju Reese, R. Alexander Zhang, Tong Wang, Xu-Qing Cai, Jianfeng Xu, Bingqian Wang, Ming Liu, Changlin Yang, Hai-Bo Li, Xiaopeng |
description | With the goal of increasing the complexity of metallo-supramolecules, two rhombus star-shaped supramolecular architectures, namely, supersnowflakes, were designed and assembled using multiple 2,2′:6′,2″-terpyridine (tpy) ligands in a stepwise manner. In the design of multicomponent self-assembly, ditopic and tritopic ligands were bridged through Ru(II) with strong coordination to form metal–organic ligands for the subsequent self-assembly with a hexatopic ligand and Zn(II). The combination of Ru(II)–organic ligands with high stability and Zn(II) ions with weak coordination played a key role in the self-assembly of giant heteroleptic supersnowflakes, which encompassed three types of tpy-based organic ligands and two metal ions. With such a stepwise strategy, the self-sorting of individual building blocks was prevented from forming the undesired assemblies, e.g., small macrocycles and coordination polymers. Furthermore, the intra- and intermolecular dynamic exchange study of two supersnowflakes by NMR and mass spectrometry revealed the remarkable stability of these giant supramolecular complexes. |
doi_str_mv | 10.1021/jacs.7b01326 |
format | article |
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The combination of Ru(II)–organic ligands with high stability and Zn(II) ions with weak coordination played a key role in the self-assembly of giant heteroleptic supersnowflakes, which encompassed three types of tpy-based organic ligands and two metal ions. With such a stepwise strategy, the self-sorting of individual building blocks was prevented from forming the undesired assemblies, e.g., small macrocycles and coordination polymers. 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Alexander</au><au>Zhang, Tong</au><au>Wang, Xu-Qing</au><au>Cai, Jianfeng</au><au>Xu, Bingqian</au><au>Wang, Ming</au><au>Liu, Changlin</au><au>Yang, Hai-Bo</au><au>Li, Xiaopeng</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Supersnowflakes: Stepwise Self-Assembly and Dynamic Exchange of Rhombus Star-Shaped Supramolecules</atitle><jtitle>Journal of the American Chemical Society</jtitle><addtitle>J. Am. Chem. Soc</addtitle><date>2017-06-21</date><risdate>2017</risdate><volume>139</volume><issue>24</issue><spage>8174</spage><epage>8185</epage><pages>8174-8185</pages><issn>0002-7863</issn><eissn>1520-5126</eissn><abstract>With the goal of increasing the complexity of metallo-supramolecules, two rhombus star-shaped supramolecular architectures, namely, supersnowflakes, were designed and assembled using multiple 2,2′:6′,2″-terpyridine (tpy) ligands in a stepwise manner. 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title | Supersnowflakes: Stepwise Self-Assembly and Dynamic Exchange of Rhombus Star-Shaped Supramolecules |
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