| Literature DB >> 24655545 |
Samson Jegan Jennifer1, Packianathan Thomas Muthiah1.
Abstract
BACKGROUND: The utility ofEntities:
Keywords: 5-chlorothiophen-2-carboxylic acid; Bipyridine; Cocrystal; Halogen bonding; Pyrimidine; Salts
Year: 2014 PMID: 24655545 PMCID: PMC3996520 DOI: 10.1186/1752-153X-8-20
Source DB: PubMed Journal: Chem Cent J ISSN: 1752-153X Impact factor: 4.215
Scheme 1Supramolecular heterosynthons that can be formed between carboxylic acids heterocyclic nitrogen of the AMPY: (a) hetero trimer (HT) (Synthon type-I) (b) linear hetero tetramer (LHT) (Synthon type-II).
Scheme 2Supramolecular hetero dimers that can be formed between carboxylic acids/carboxylate and heterocyclic nitrogen: (a) carboxylic acid-aromatic nitrogen with R22(7) synthon (Synthon type-III)(b) pyridinium-carboxylate with R22(7) synthon (Synthon type-IV)(c) carboxylic acid-aromatic nitrogen with single point heterosynthon (Synthon type-V)and (d) pyridinium-carboxylate with single point heterosynthon (Synthon type-VI)
Supramolecular hetero dimers that can be formed between carboxylic acids/carboxylate and heterocyclic nitrogen: (a) carboxylic acid-aromatic nitrogen with R2 (7) synthon (Synthon type-III)(b) pyridinium-carboxylate with R (7) synthon (Synthon type-IV)(c) carboxylic acid-aromatic nitrogen with single point heterosynthon (Synthon type-V)and (d) pyridinium-carboxylate with single point heterosynthon (Synthon type-VI).
Crystallographic data for structures 1a - 7a
| Empirical Formula | C6 H9 N3, 2(C5 H3 Cl S) | C6 H10 N3, C5 H3 O2 S | C6 H9 N3, C6 H4 O4 S | C4 H6 N3 O, C4 H5 N3 O, C5 H2 Cl O2 S | C12 H11 N5, C5 H3 Cl O2 S | C5 H7 N2, C5 H2 Cl O2 S | C13 H9 N, C5 H3 Cl O2 S |
| Formula weight | 448.35 | 251.31 | 295.32 | 384.81 | 387.85 | 256.71 | 341.81 |
| Temp, K | 296 | 296 | 296 | 296 | 296 | 296 | 296 |
| λ (Å) | 0.71073 | 0.71073 | 0.71073 | 0.71073 | 0.71073 | 0.71073 | 0.71073 |
| Crystal system | Monoclinic | Monoclinic | Monoclinic | Triclinic | Triclinic | Monoclinic | Triclinic |
| Space group | P21/c | P21/c | P21/c | P-1 | P-1 | P21/c | P-1 |
| a (Å) | 7.9724(3) | 6.5830(2) | 7.6474(3) | 7.2399(1) | 4.9941(3) | 8.4777(8) | 7.6417(1 |
| b (Å) | 11.4924(3) | 25.0842(7) | 23.8704(7) | 7.4140(1) | 11.3127(7) | 12.4062(12) | 8.8984(2) |
| c (Å) | 21.6804(7) | 9.6092(3) | 14.7634(5) | 17.4125(3) | 16.3754(9) | 11.9771(10) | 12.1882(2) |
| α(º) | 90 | 90 | 90 | 89.751(1) | 106.595(4) | 90 | 73.569(1) |
| β (º) | 96.742(2) | 128.170(2) | 92.372(2) | 88.462(1) | 92.393(4) | 111.541(6) | 87.200(1) |
| γ (º) | 90 | 90 | 90 | 61.449(1) | 100.126(4) | 90 | 86.598(1) |
| V (Å3) | 1972.67(11) | 1247.48(7) | 2692.70(16) | 820.65(2) | 868.66(9) | 1171.72(19) | 793.09(2) |
| Z | 4 | 4 | 8 | 2 | 2 | 4 | 2 |
| Final R1 index [I > 2σ(I)] | 0.0390 | 0.0757 | 0.0451 | 0.0444 | 0.0585 | 0.0398 | 0.0401 |
| wR2 (all data) | 0.0891 | 0.2970 | 0.1570 | 0.1331 | 0.1345 | 0.1242 | 0.1070 |
| Largest difference in peak and hole (e Å-3) | -0.19, 0.16 | -0.57, 0.90 | -0.23, 0.27 | -0.54, 0.70 | -0.23, 0.46 | -0.49, 0.82 | -0.21, 0.18 |
Crystallographic data for Structures 8b-14b
| Empirical Formula | C10 H8 N2, 2(C5 H3 Cl O2 S) | C10 H8 N2, 2(C5 H4 O2 S) | C13 H14 N2, 2(C5 H3 Cl O2 S) | C13 H15 N2, C5 H4 O2 S, C5 H3 O2 S | C13 H16 N2, C6 H4 O4 S, C6 H2 O4 S | C10 H22 N2, 2(C5 H3 Cl O2 S), 2(C5 H2 Cl O2 S) | C10 H8 N2 O2, 2(C5 H3 Cl O2 S) |
| Formula weight | 481.37 | 412.49 | 523.45 | 454.57 | 542.59 | 818.66 | 513.37 |
| Temp, K | 296 | 296 | 296 | 296 | 296 | 296 | 296 |
| λ (Å) | 0.71073 | 0.71073 | 0.71073 | 0.71073 | 0.71073 | 0.71073 | 0.71073 |
| Crystal system | Monoclinic | Orthorhombic | Monoclinic | Orthorhombic | Monoclinic | Triclinic | Monoclinic |
| Space group | P21/c | Pbcn | C2 | Pna21 | P21/m | P-1 | P21/c |
| a (Å) | 3.8843(1) | 26.1893(5) | 24.9390(4) | 16.8789(4) | 6.9798(1) | 8.3133(1) | 6.8923(5) |
| b (Å) | 28.0949(5) | 7.4673(2) | 4.7213(1) | 5.9661(1) | 18.8881(4) | 9.5054(1) | 13.0669(8) |
| c (Å) | 9.6835(2) | 10.0668(2) | 10.4626(2) | 22.7337(5) | 9.8801(2) | 11.9923(2) | 11.9438(7) |
| α(º) | 90 | 90 | 90 | 90 | 90 | 90.270(1) | 90 |
| β (º) | 105.086(1) | 90 | 93.980(2) | 90 | 110.087(1) | 105.535(1) | 95.316(5) |
| γ (º) | 90 | 90 | 90 | 90 | 90 | 97.778(1) | 90 |
| V (Å3) | 1020.33(4) | 1968.70(8) | 1228.94(4) | 2289.31(8) | 1223.31(4) | 903.79(2) | 1071.04(12) |
| Z | 2 | 4 | 2 | 4 | 2 | 1 | 2 |
| Final R1 index [I > 2σ(I)] | 0.0385 | 0.0400 | 0.0371 | 0.0608 | 0.0335 | 0.0400 | 0.0452 |
| wR2 (all data) | 0.1040 | 0.1258 | 0.1061 | 0.1904 | 0.0909 | 0.1519 | 0.1336 |
| Largest difference in peak and hole (e Å-3) | -0.18, 0.33 | -0.27, 0.17 | -0.21, 0.22 | -0.42, 0.66 | -0.22, 0.20 | -0.27, 0.34 | -0.33, 0.27 |
Hydrogen bond metrics for compounds 1a-7b
| | | | | |
| O1A-H1A∙∙∙N1B | 1.66(4) | 2.636(4) | 172(3) | |
| O3A-H3A∙∙∙N3B | 1.70(4) | 2.682(3) | 178(4) | |
| N4B-H3C∙∙∙O2A | 2.08 | 2.928(4) | 170 | |
| N4B-H3D∙∙∙O4A | 2.05 | 2.902(4) | 171 | |
| C8A-H8A∙∙∙O4A | 2.55 | 3.419(5) | 155 | 1-x,-y,1-z |
| C8B-H8E∙∙∙O4A | 2.60 | 3.495(5) | 156 | 1-x,1-y,1-z |
| C5A-Cl1A Cg3 | 3.7555(19) | 92.33(12) | 4.190(4) | -1 + X,1/2-Y,-1/2 + Z |
| C10A-Cl2A Cg2 | 3.9862(19) | 88.75(14) | 4.302(4) | 1 + X,1/2-Y,1/2 + Z |
| | | | | |
| N1B-H1B∙∙∙O2A | 1.74 | 2.593(4) | 171 | |
| N4B-H4C∙∙∙N3B | 2.19 | 3.043(5) | 171 | -x,1-y,2-z |
| N4B-H4D∙∙∙O1A | 2.08 | 2.912(4) | 164 | |
| C5A-H5A∙∙∙O1A | 2.51 | 3.417(4) | 165 | x,1/2-y,-1/2 + z |
| | | | | |
| N4C-H4E∙∙∙O2A | 2.07 | 2.926(3) | 173 | 1-x,-1/2 + y,3/2-z |
| N4C-H4F∙∙∙O4A | 2.00 | 2.853(3) | 171 | |
| N4D-H4H∙∙∙O2B | 2.04 | 2.897(3) | 174 | |
| N4D-H4I∙∙∙O4B | 2.08 | 2.933(3) | 171 | 2-x,-1/2 + y,1/2-z |
| O1A-H11A∙∙∙N3C | 1.83(3) | 2.608(3) | 166(3) | 1-x,1/2 + y,3/2-z |
| O1B-H11B∙∙∙N1D | 1.96(3) | 2.660(3) | 171(3) | |
| O3A-H33A∙∙∙N1C | 1.67(3) | 2.643(3) | 177(3) | |
| O3B-H33B∙∙∙N3D | 1.69(3) | 2.636(3) | 167(3) | 2-x,1/2 + y,1/2-z |
| | | | | |
| N1A-H1A∙∙∙O2 | 1.96 | 2.759(3) | 154 | 1-x,2-y,1-z |
| N1B-H1B∙∙∙O1 | 1.76 | 2.6194(18) | 172 | |
| N3B-H3B∙∙∙N3A | 2.00 | 2.8586(17) | 177 | |
| N4A-H4C∙∙∙O3B | 2.06 | 2.9234(19) | 176 | |
| N4A-H4D∙∙∙O3A | 2.15 | 2.8632(19) | 140 | x,-1 + y,z |
| N4B-H4E∙∙∙O3A | 1.92 | 2.7836(19) | 177 | |
| N4B-H4F∙∙∙O3B | 2.09 | 2.8626(18) | 149 | x,1 + y,z |
| C5-Cl1 Cg3 | 3.6501(10) | 97.03(7) | 4.220(2) | -X,1-Y,-Z |
| C1-O1 Cg2 | 3.4019(16) | 141.27(12 | 4.460(2) | -X,2-Y,1-Z |
| C2A-O3A Cg1 | 3.4771(14) | 69.46(9) | 3.2563(16) | 1-X,2-Y,1-Z |
| | | | | |
| N1 –H1∙∙∙O1 | 2.00(6) | 2.886(7) | 169(7) | -1 + x,y,z |
| O2 -H2A∙∙∙N5 | 1.85(6) | 2.631(6) | 173(8) | 1 + x,y,z |
| N4 –H4 ∙∙∙N3 | 1.89(6) | 2.886(7) | 169(6) | 1-x,-y,1-z |
| C8 –H8 ∙∙∙N1 | 2.54 | 2.875(8) | 101 | |
| C11-H11∙∙∙O2 | 2.60 | 3.479(9) | 158 | x,1 + y,z |
| C5A-Cl1A Cg3 | 3.874(3) | 127.9(3) | 5.105(7) | -1-X,1-Y,2-Z |
| C1A-O2A Cg1 | 3.945(5) | 63.4(3) | 3.571(6) | -1 + X,Y,Z |
| C1A-O2A Cg5 | 3.962(5) | 69.1(3) | 3.707(6) | 1 + X,Y,Z |
| | | | | |
| N1B-H1B∙∙∙O1A | 1.82 | 2.6667(17) | 169 | |
| N2B-H2C∙∙∙O2A | 1.94 | 2.7861(19) | 169 | |
| N2B-H2D∙∙∙O1A | 2.03 | 2.8873(19) | 172 | x,3/2-y,1/2 + z |
| C2B-H2B∙∙∙O2A | 2.48 | 3.211(2) | 135 | 1-x,1/2 + y,3/2-z |
| C3B-H3B Cg2 | 2.93 | 133 | 3.628(2) | 1 + X,3/2-Y,1/2 + Z |
| | | | | |
| O1A-H1A∙∙∙N1B | 1.721(19) | 2.574(2) | 168(2) |
Hydrogen bond metrics for compounds 8b-14b
| | | | | |
| O1 –H1 ∙∙∙N1 | 1.77 | 2.6543(16) | 179 | |
| | | | | |
| O1 –H1 ∙∙∙N1 | 1.76(3) | 2.629(3) | 178(3) | |
| | | | | |
| O1 –H1 ∙∙∙N1 | 1.63(4) | 2.576(3) | 171(3) | |
| C9 –H9 ∙∙∙O2 | 2.44 | 3.350(3) | 166 | 1-x,-1 + y,1-z |
| C5-Cl1 Cg2 | 3.6338(12) | 90.93(8) | 4.045(3) | X,1 + Y,Z |
| | | | | |
| O3 –H1 ∙∙∙N1 | 1.81 | 2.592(9) | 156 | |
| N2 –H2 ∙∙∙O2 | 1.75 | 2.569(8) | 171 | |
| C20-H20∙∙∙O4 | 2.59 | 3.488(10) | 163 | -1/2 + x,1/2-y,z |
| | | | | |
| N1 -H1A∙∙∙O2 | 1.75 | 2.5883(19) | 165 | |
| O3 -H3A∙∙∙O1 | 1.56(2) | 2.5439(16) | 176(2) | |
| C7 –H7 ∙∙∙O4 | 2.42 | 3.297(2) | 156 | 1-x,1-y,1-z |
| C8 –H8 ∙∙∙O4 | 2.48 | 3.368(2) | 161 | 1 + x,y,1 + z |
| C11-H11∙∙∙O1 | 2.39 | 3.201(3) | 146 | -x,1-y,1-z |
| | | | | |
| N1 -H1A∙∙∙O3 | 1.85 | 2.7396(16) | 167 | |
| N1 -H1B∙∙∙O4 | 1.99 | 2.8852(19) | 159 | 2-x,1-y,1-z |
| O1 -H2A∙∙∙O4 | 1.52 | 2.5202(17) | 172 | |
| | | | | |
| O1 -H1A∙∙∙O3 | 1.84(5) | 2.560(4) | 171(5) | |
| C6 –H6 ∙∙∙O2 | 2.39 | 3.287(5) | 163 | |
| C7 –H7 ∙∙∙O3 | 2.50 | 3.381(4) | 158 | x,1/2-y,-1/2 + z |
| C10-H10∙∙∙O2 | 2.51 | 3.308(4) | 144 | x,1/2-y,1/2 + z |
Figure 1(a-g) ORTEP views of compounds 1a-7a showing the atom-numbering scheme. Displacement ellipsoids drawn at 50% probability level for all non hydrogen atoms and H atoms are shown as small spheres of arbitrary radii.
Figure 2(a-g) ORTEP views of compounds 8b-14b showing the atom-numbering scheme. Displacement ellipsoids drawn at 50% probability level for all non hydrogen atoms and H atoms are shown as small spheres of arbitrary radii.
Scheme 3Molecular structures of components used in 1–14
Molecular structures of components used in 1–14.
Figure 3(a) Formation of hexameric super molecule in (1a) by the N-H…O and C-H…O hydrogen bonds. (b) Hexameric super molecule of one plane (yellow) linked to the similar kind of hexameric super molecule in another plane (blue) linked by soft C-H…O hydrogen bonds (red dotted lines).
Figure 4Formation of R (8) moieties in 2a and the formation of LHT.
Figure 5(a) Formation of supramolecular chains connected by stacking interactions. (b) Wavy sheet formed through weak C-H···O interaction in TDCAMPY (3a).
Figure 6(a) Base pairing chains in (4a), hydrogens involved in bonding are omitted for clarity. (b) the base pairing chains linked by Cl…π interactions.
Figure 7(a): R(9) motif in (5a) and the formation of tetrameric super molecule. (b) Adjacent tetrameric super molecules linked by Cl…π interactions between Cl of 5-TPC of one chain and phenyl ring of BA of another chain.
Figure 8π-π stacking interaction observed between the 2NPY pyridinium cations in (6a).
Figure 9(a) Stacking interaction between the oppositely oriented consecutive acridine molecules in (7a). (b) Two of the adjacent chains cross-linked via intermolecular C—H···π interactions.
Figure 10(a) Formation of ladder through O–H…N and Cl…O bonds in (8b) where 4-4bipy acts as rungs and 5-tpc as uprights. (b) The three molecule aggregates in 8b are further linked to similar neighboring aggregates through strong Cl…O interactions.
Figure 11Formation of ladder through C-H…O hydrogen bonds in (9b).
Figure 12(a) Formation of ladders by Cl…π interactions. (b) Supramolecular architectures formed in (10b).
Figure 13(a) Formation of chain by π-π and C-H…π interactions (b) supramolecular network in (11b).
Figure 14Formation of supramolecular chains (yellow, green) in (12b) by N-H…O and O-H…O interactions and these chains linked by stacking interactions between TDC rings (represented as spacefilled models).
Figure 15R (12) ring motif and bridging of the ring motifs by the bipiperazinium cations in (13b).
Figure 16Two of the chains linked by π-π stacking interactions between the 5-TPC rings in (13b).
Figure 17(a) A portion of the crystal packing of 14b showing hydrogen-bonding patterns with graph-set notations R(9), R(8). Dotted lines denote hydrogen bonds. H atoms non-involved in hydrogen-bonding omitted for clarity. (b) Hydrogen bonded network formed in (14b).
Comparisons of dihedral angles (between carboxylic acid and pyridine) and C-N-C bond angles (involved in acid–base interaction) in compounds 1a-14b
| 5TPC | AMPY | HT | 14.2(15), 9.4(5) | | 116.89 | |
| 117.69 | ||||||
| TPC | AMPY | LHT | 19.1(4) | | 118.80 | |
| 117.30 | ||||||
| TDC | AMPY | HT | 1.8(13), 2.4(12) | | 117.76 | |
| 117.76 | ||||||
| 117.92 | ||||||
| 118.45 | ||||||
| 5TPC | 2NPY | HD | 8.5(3) | | 122.01 | |
| 123.94 | ||||||
| 121.43 | ||||||
| 119.49 | ||||||
| 5TPC | CYT | HD | 57.0(2) | | 103.18 | |
| 5TPC | BA | HD | 13(3) | | 117.84 | |
| 5TPC | ACR | HD | 63.6(8) | | 120.06 | |
| 5TPC | 44BIPY | HD | 29.68(10) | 0.00(7) | 117.23 | |
| TPC | 44BIPY | HD | 15.6(3) | 35.13(12) | 117.58 | |
| 5TPC | 44TMBP | HD | 7.5(16) | 78.31(14) | 116.38 | |
| TPC | 44TMBP | HT | 2.9(4), 7.9(4) | 51.7(4) | 117.25 | |
| 117.85 | ||||||
| TDC | 44TMBP | HD | 69.16(1) | 82.15 | 121.82 | |
| 5TPC | 44BIPZ | HD | 59.06(3) | 0.00(1) | 111.32 | |
| 5TPC | 44PYNO | HD | 5.34(3) | 0.00(1) | 119.93 |
Figure 18Plot of ΔpKa vs ΔDc-o for compounds. Blue (cytosine salt) red block (ampy salt) red box (ampy cocrystal) black (bipy cocrystal) green (44TMBP cocrystal).