Synthesis, Crystal Structure, and Properties of Two 2D Lamella Coordination Polymers Generated from Unsymmetrically Carboxylate Bridging Ligand
收藏Taylor & Francis Group2016-01-19 更新2026-04-16 收录
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https://tandf.figshare.com/articles/dataset/Synthesis_Crystal_Structure_and_Properties_of_Two_2D_Lamella_Coordination_Polymers_Generated_from_Unsymmetrically_Carboxylate_Bridging_Ligand/1254928/2
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Self-assembly between simple unsymmetrical ligands, such as h<sub>2</sub>epda (5-ethyl-pyridine-2,3-dcarboxylic acid) and H<sub>2</sub>hmph(homophthalic acid) and two transition metals produce two new 2D lamella coordination polymers [Cu(hedpa)<sub>2</sub>]<sub>n</sub><b>1</b> and [Co(hmph)(bpe)]<sub>n</sub><b>2</b> (bpe = 1,2-di(4-pyridyl)ethylene), respectively. The 2D lamella structure of <b>2</b> features hmph-bridged binuclear cobalt(II) chains joined by less flexible trans-bpe ligands, whereas the 2D layer of <b>1</b> manifests that unsymmetrical ligand h<sub>2</sub>epda directly bridges mononuclear copper(II) running along the <i>bc</i> plane. The thermogravimetric (TG) reveal that both compounds are stable. Magnetic measurements show that complex <b>2</b> exhibits global metamagnetic behaviors.
提供机构:
Guang-Zhen Liu
创建时间:
2015-01-06



