Molecular Packing of Group‐10 Metal Complexes of a Thiophene‐Fused Salophen Ligand Bearing a Wide π‐Surface

Naphthodithiophene‐fused salophen ligands and their Zn(II), Ni(II), and Pd(II) complexes were synthesized to investigate the effect of π‐surface extension on intermolecular self‐assembly. Single‐crystal X‐ray diffraction revealed that the Group 10 complexes adopt highly planar molecular structures and form head‐to‐tail π‐stacked dimers in the solid state, whereas the Zn(II) complex exhibits a distinct packing motif owing to its pentacoordinate geometry. Variable‐concentration NMR and UV–vis absorption measurements demonstrated pronounced self‐association of the Ni(II) and Pd(II) complexes in solution, affording dimerization equilibrium constants of 432 and 272 L mol −1 , respectively. In contrast, the corresponding salophen complexes lacking the naphthodithiophene unit showed only weak self‐association, indicating that extension of the π‐conjugated surface markedly enhances intermolecular π–π interactions. Furthermore, introduction of bulky tert ‐butyl substituents effectively suppresses dimer formation through steric hindrance. These results demonstrate that fusion of a naphthodithiophene unit provides an efficient molecular design strategy for controlling the self‐assembly behavior of square‐planar salophen metal complexes.

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Publication Details

Journal
European Journal of Inorganic Chemistry
Published
2026-09-17
DOI
https://doi.org/10.1002/ejic.70323
Primary Topic
Surface Chemistry and Catalysis
Type
article
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article

Molecular Packing of Group‐10 Metal Complexes of a Thiophene‐Fused Salophen Ligand Bearing a Wide π‐Surface

Tatsuya Nabeshima, Kotaro Kanazawa, Masaki Yamamura
European Journal of Inorganic Chemistry
Surface Chemistry and Catalysis
article

Molecular Packing of Group‐10 Metal Complexes of a Thiophene‐Fused Salophen Ligand Bearing a Wide π‐Surface

Tatsuya Nabeshima, Kotaro Kanazawa, Masaki Yamamura
article en

Abstract

Naphthodithiophene‐fused salophen ligands and their Zn(II), Ni(II), and Pd(II) complexes were synthesized to investigate the effect of π‐surface extension on intermolecular self‐assembly. Single‐crystal X‐ray diffraction revealed that the Group 10 complexes adopt highly planar molecular structures and form head‐to‐tail π‐stacked dimers in the solid state, whereas the Zn(II) complex exhibits a distinct packing motif owing to its pentacoordinate geometry. Variable‐concentration NMR and UV–vis absorption measurements demonstrated pronounced self‐association of the Ni(II) and Pd(II) complexes in solution, affording dimerization equilibrium constants of 432 and 272 L mol −1 , respectively. In contrast, the corresponding salophen complexes lacking the naphthodithiophene unit showed only weak self‐association, indicating that extension of the π‐conjugated surface markedly enhances intermolecular π–π interactions. Furthermore, introduction of bulky tert ‐butyl substituents effectively suppresses dimer formation through steric hindrance. These results demonstrate that fusion of a naphthodithiophene unit provides an efficient molecular design strategy for controlling the self‐assembly behavior of square‐planar salophen metal complexes.

European Journal of Inorganic Chemistry
University of Tsukuba (JP), Tsukuba University of Technology (JP), Toyama Prefectural University (JP)
Openalex Percentile: Top 20%
Surface Chemistry and Catalysis
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Molecular Packing of Group‐10 Metal Complexes of a Thiophene‐Fused Salophen Ligand Bearing a Wide π‐Surface — Tatsuya Nabeshima, Kotaro Kanazawa, et al. · European Journal of Inorganic Chemistry (2026) | TGRS Research Map | TGRS