4.7 Article

Sequential Assembly and Stabilization of Cu6S6 Octahedral Clusters in NaCl-, NiAs-, and CdI2-Related Structures and Their Utility toward Thermochromism and Multicomponent Hantzsch Reaction

Journal

INORGANIC CHEMISTRY
Volume 62, Issue 11, Pages 4417-4434

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.inorgchem.2c03859

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The structures of seven new inorganic-organic coordination polymer compounds have been determined by single-crystal structure determination. These compounds were synthesized by assembling a [Cu6(mna)6]6- moiety in the presence of a Mn salt and a secondary amine ligand. Some of the prepared compounds exhibit structures that resemble classical inorganic structures, and they showed good yields in the multicomponent Hantzsch reaction. Compound II and VI showed reversible color change from pale yellow to deep red upon heating to 70°C, suggesting their potential use as thermochromic materials.
Seven new inorganic-organic coordination polymer compounds have been synthesized and their structures are determined by single-crystal structure determination. The compounds were prepared by the sequential assembly of a [Cu6(mna)6]6- moiety in the presence of a Mn salt and a secondary amine ligand. Of the seven compounds, [{Cu6(mna)6}-Mn3(H2O)(H2O)1.5]center dot 5.5H2O (I), [{Cu6(mna)6}Mn3(H2O)-(Im)1 .5]center dot 3.5H2O (Ia), [{Cu6(mna)6}{Mn(BPY)(H2O)}2{Mn-( H2 O ) 4} ] center dot 2 H2 O (III ), and [ { C u 6 ( m n a ) 6 } { M n (BPE)0.5(H2O)2}2{Mn(BPE)(H2O)2}] (IV) have a threedimensional structure, whereas [{Cu6(mna)4.5(Hmna)1.5}{Mn-(BPA)(H2O)2}{Mn(H2O)}]{Mn0.25(H2O)3}center dot 7H2O (II), [{Cu6(mna)6}{Mn(4-BPDB)0.5H2O}{Mn(H2O)2}].{Mn(H2O)6}center dot 6H2O (V), and [{Cu6(mna)4(Hmna)2}center dot{Mn(H2O)3}2]center dot(4-APY)2 center dot 6H2O (VI) have a two-dimensional structure. Some of the prepared compounds exhibit structures that closely resemble the classical inorganic structures, such as NaCl (Ia, III), NiAs (I), and CdI2 (IV and VI). The stabilization of such simple structures from the assembly of octahedral Cu6S6 clusters and different Mn species and aromatic nitrogen-containing ligands suggests the subtle interplay between the constituent reactants. The compounds were examined for the multicomponent Hantzsch reaction, which gave the product in good yields. The compounds, II and VI, on heating to 70 degrees C change color reversibly from pale yellow to deep red, which suggests the possible use of these compounds as thermochromic materials. The present study suggests that the Cu6S6 octahedral clusters can be assembled into structures that resemble classical inorganic structures.

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