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Molecular tectonics: enantiomerically pure 1D stair-type mercury coordination networks based on rigid bismonodentate C2-chiral organic tectons†
Patrick Larpent,Abdelaziz Jouaiti,Nathalie Kyritsakas,Mir Wais Hosseini
Dalton Transactions Pub Date : 10/03/2013 00:00:00 , DOI:10.1039/C3DT52036F
Abstract

Combinations of three enantiomerically pure organic chiral linear tectons bearing two divergently oriented pyridyl units as coordinating poles with HgCl2 as a two-connecting V-shape metallatecton offering two free coordination sites lead to the formation of stair-type 1D enantiomerically pure mercury coordination networks.

Graphical abstract: Molecular tectonics: enantiomerically pure 1D stair-type mercury coordination networks based on rigid bismonodentate C2-chiral organic tectons
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