Adenin-1-ium hydrogen isophthalate di-methyl-formamide monosolvate

In the title proton-transfer organic salt, C5H6.3N5 (+)·C8H4.7O4 (-)·C3H7NO, the adeninium moiety is protonated at the N atom in the 1-position of the 6-amino-7H-purin-1-ium (adeninium) cation. In the solid state, the second acidic proton of isophthalic acid is partially transferred to the imidazole...

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Veröffentlicht in:Acta crystallographica. Section E, Structure reports online Structure reports online, 2014-02, Vol.70 (Pt 2), p.o166-o167
Hauptverfasser: Koteswara Rao, Vandavasi, Siddiqui, Tausif, Zeller, Matthias, Lovelace-Cameron, Sherri R
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container_end_page o167
container_issue Pt 2
container_start_page o166
container_title Acta crystallographica. Section E, Structure reports online
container_volume 70
creator Koteswara Rao, Vandavasi
Siddiqui, Tausif
Zeller, Matthias
Lovelace-Cameron, Sherri R
description In the title proton-transfer organic salt, C5H6.3N5 (+)·C8H4.7O4 (-)·C3H7NO, the adeninium moiety is protonated at the N atom in the 1-position of the 6-amino-7H-purin-1-ium (adeninium) cation. In the solid state, the second acidic proton of isophthalic acid is partially transferred to the imidazole N atom of the adeninium cation [refined O-H versus N-H ratio = 0.70 (11):0.30 (11)]. Through the partially transferred proton, the adeninium cation is strongly hydrogen bonded (N-H⋯O/O-H⋯N) to the isophthalate anion. This strong inter-action is assisted by another N-H⋯O hydrogen bond originating from the adeninium NH2 group towards the isophthalate keto O atom, with an R (2) 2(8) graph-set motif. This arrangement is linked via N-H⋯O hydrogen bonds to the O atoms of the carboxyl-ate group of an isophthalate anion. Together, these hydrogen bonds lead to the formation criss-cross zigzag isophthalate⋯adeninium chains lying parallel to (501) and (50-1). The adeninium cations and the isophthalate anions are arranged in infinite π stacks that extend along the c-axis direction [inter-planar distance = 3.305 (3) Å]. Mol-ecules are inclined with respect to this direction and within the stacks they are offset by ca. half a mol-ecule each. Combination of the N-H⋯O and O-H⋯N hydrogen bonds with the π-π inter-actions forms infinitely stacked isophthalate⋯adeninium chains, thus leading to a two-dimensional supra-molecular structure with parallel inter-digitating layers formed by the π stacked isophthalate⋯adeninium chains. The DMF mol-ecules of crystallization are bonded to the adeninium cations through strong N-H⋯O hydrogen bonds and project into the lattice space in between the anions and cations. There are also C-H⋯O hydrogen bonds present which, combined with the other inter-actions, form a three-dimensional network. The crystal under investigation was found to be split and was handled as if non-merohedrally twinned.
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In the solid state, the second acidic proton of isophthalic acid is partially transferred to the imidazole N atom of the adeninium cation [refined O-H versus N-H ratio = 0.70 (11):0.30 (11)]. Through the partially transferred proton, the adeninium cation is strongly hydrogen bonded (N-H⋯O/O-H⋯N) to the isophthalate anion. This strong inter-action is assisted by another N-H⋯O hydrogen bond originating from the adeninium NH2 group towards the isophthalate keto O atom, with an R (2) 2(8) graph-set motif. This arrangement is linked via N-H⋯O hydrogen bonds to the O atoms of the carboxyl-ate group of an isophthalate anion. Together, these hydrogen bonds lead to the formation criss-cross zigzag isophthalate⋯adeninium chains lying parallel to (501) and (50-1). The adeninium cations and the isophthalate anions are arranged in infinite π stacks that extend along the c-axis direction [inter-planar distance = 3.305 (3) Å]. Mol-ecules are inclined with respect to this direction and within the stacks they are offset by ca. half a mol-ecule each. Combination of the N-H⋯O and O-H⋯N hydrogen bonds with the π-π inter-actions forms infinitely stacked isophthalate⋯adeninium chains, thus leading to a two-dimensional supra-molecular structure with parallel inter-digitating layers formed by the π stacked isophthalate⋯adeninium chains. The DMF mol-ecules of crystallization are bonded to the adeninium cations through strong N-H⋯O hydrogen bonds and project into the lattice space in between the anions and cations. There are also C-H⋯O hydrogen bonds present which, combined with the other inter-actions, form a three-dimensional network. 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Section E, Structure reports online</title><addtitle>Acta Crystallogr Sect E Struct Rep Online</addtitle><description>In the title proton-transfer organic salt, C5H6.3N5 (+)·C8H4.7O4 (-)·C3H7NO, the adeninium moiety is protonated at the N atom in the 1-position of the 6-amino-7H-purin-1-ium (adeninium) cation. In the solid state, the second acidic proton of isophthalic acid is partially transferred to the imidazole N atom of the adeninium cation [refined O-H versus N-H ratio = 0.70 (11):0.30 (11)]. Through the partially transferred proton, the adeninium cation is strongly hydrogen bonded (N-H⋯O/O-H⋯N) to the isophthalate anion. This strong inter-action is assisted by another N-H⋯O hydrogen bond originating from the adeninium NH2 group towards the isophthalate keto O atom, with an R (2) 2(8) graph-set motif. This arrangement is linked via N-H⋯O hydrogen bonds to the O atoms of the carboxyl-ate group of an isophthalate anion. Together, these hydrogen bonds lead to the formation criss-cross zigzag isophthalate⋯adeninium chains lying parallel to (501) and (50-1). The adeninium cations and the isophthalate anions are arranged in infinite π stacks that extend along the c-axis direction [inter-planar distance = 3.305 (3) Å]. Mol-ecules are inclined with respect to this direction and within the stacks they are offset by ca. half a mol-ecule each. Combination of the N-H⋯O and O-H⋯N hydrogen bonds with the π-π inter-actions forms infinitely stacked isophthalate⋯adeninium chains, thus leading to a two-dimensional supra-molecular structure with parallel inter-digitating layers formed by the π stacked isophthalate⋯adeninium chains. The DMF mol-ecules of crystallization are bonded to the adeninium cations through strong N-H⋯O hydrogen bonds and project into the lattice space in between the anions and cations. There are also C-H⋯O hydrogen bonds present which, combined with the other inter-actions, form a three-dimensional network. 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In the solid state, the second acidic proton of isophthalic acid is partially transferred to the imidazole N atom of the adeninium cation [refined O-H versus N-H ratio = 0.70 (11):0.30 (11)]. Through the partially transferred proton, the adeninium cation is strongly hydrogen bonded (N-H⋯O/O-H⋯N) to the isophthalate anion. This strong inter-action is assisted by another N-H⋯O hydrogen bond originating from the adeninium NH2 group towards the isophthalate keto O atom, with an R (2) 2(8) graph-set motif. This arrangement is linked via N-H⋯O hydrogen bonds to the O atoms of the carboxyl-ate group of an isophthalate anion. Together, these hydrogen bonds lead to the formation criss-cross zigzag isophthalate⋯adeninium chains lying parallel to (501) and (50-1). The adeninium cations and the isophthalate anions are arranged in infinite π stacks that extend along the c-axis direction [inter-planar distance = 3.305 (3) Å]. Mol-ecules are inclined with respect to this direction and within the stacks they are offset by ca. half a mol-ecule each. Combination of the N-H⋯O and O-H⋯N hydrogen bonds with the π-π inter-actions forms infinitely stacked isophthalate⋯adeninium chains, thus leading to a two-dimensional supra-molecular structure with parallel inter-digitating layers formed by the π stacked isophthalate⋯adeninium chains. The DMF mol-ecules of crystallization are bonded to the adeninium cations through strong N-H⋯O hydrogen bonds and project into the lattice space in between the anions and cations. There are also C-H⋯O hydrogen bonds present which, combined with the other inter-actions, form a three-dimensional network. The crystal under investigation was found to be split and was handled as if non-merohedrally twinned.</abstract><cop>United States</cop><pub>International Union of Crystallography</pub><pmid>24764884</pmid><doi>10.1107/S1600536813034971</doi><oa>free_for_read</oa></addata></record>
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title Adenin-1-ium hydrogen isophthalate di-methyl-formamide monosolvate
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