| Literature DB >> 32937938 |
Ioannis Mylonas-Margaritis1, Auban Gérard1, Katerina Skordi2, Julia Mayans3, Anastasios Tasiopoulos2, Patrick McArdle1, Constantina Papatriantafyllopoulou1.
Abstract
The synthesis and characterization of coordination polymers andEntities:
Keywords: carboxylates; coordination polymers; detection; encapsulation; iron(III); magnetism; metal–organic frameworks (MOFs); mixed-ligand; pyridyl oximes
Year: 2020 PMID: 32937938 PMCID: PMC7560365 DOI: 10.3390/ma13184084
Source DB: PubMed Journal: Materials (Basel) ISSN: 1996-1944 Impact factor: 3.623
Scheme 1Schematic representation of the 2-pyridyl oximes (left) and the ligand H4pma (right) discussed in this work.
Crystallographic data for complexes 1–9.
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| Empirical formula | C16H15N3O11Zn | C11H8N3O5Zn | C11H10N3O6 Zn |
| Formula weight | 490.68 | 327.57 | 346.60 |
| Crystal system | Triclinic | Triclinic | Monoclinic |
| Space group |
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| 8.1151(3) | 6.9864(7) | 11.4913(8) | |
| 9.8550(4) | 8.9530(8) | 6.6261(5) | |
| 11.8506(5) | 10.4524(9) | 16.1381(12) | |
| 93.283(3) | 83.697(7)° | 90 | |
| 105.135(3) | 94.887(2) | 104.335(8)° | |
| 92.769(3) | 71.582(9)° | 90 | |
| 911.40(6) | 612.98(10) | 1190.54(16) | |
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| 2 | 2 | 4 |
| 1.788 | 1.775 | 1.934 | |
| Radiation, | 0.71073 | 1.54184 | 0.71073 |
| μ (mm−1) | 1.420 | 3.042 | 2.099 |
| Temperature (K) | 297.9(6) | 100(2) | 100(2) |
| Measd/independent reflns ( | 4250/3667 | 3860/2400 | 4714/2088 |
| Parameters refined | 316 | 197 | 197 |
| GoF (on | 1.059 | 1.078 | 1.055 |
| 0.0352 | 0.0517 | 0.0353 | |
| 0.0834 | 0.1377 | 0.0879 | |
| (Δ | 0.572/−0.504 | 2.839/−0.831 | 0.573/−0.632 |
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| Empirical formula | C22H28N6O16Co2 | C22H28N6O16Mn2 | C14H15N4O6Cu |
| Formula weight | 750.36 | 742.38 | 398.84 |
| Crystal system | Monoclinic | Monoclinic | Triclinic |
| Space group |
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| Pī |
| 10.9732(9) | 11.1773(8) | 6.5039(4) | |
| 11.7514(8) | 12.2116(8) | 10.0104(9) | |
| 11.6014(13) | 11.5293(9) | 12.7604(9) | |
| 90 | 90 | 96.743(6) | |
| 107.619(10) | 106.542(7) | 91.660(5) | |
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| 90 | 90 | 108.375(7) |
| 1425.8(2) | 1508.5(2) | 781.05(11) | |
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| 2 | 2 | 2 |
| 1.748 | 1.634 | 1.696 | |
| Radiation, | 1.54184 | 0.71073 | 0.71073 |
| μ (mm−1) | 9.917 | 0.921 | 1.440 |
| Temperature (K) | 100(2) | 298.0(2) | 299.0(1) |
| Measd/independent reflns ( | 5285/2830 | 3603/2795 | 3616/2040 |
| Parameters refined | 212 | 244 | 240 |
| GoF (on | 1.112 | 1.047 | 0.873 |
| 0.0547 | 0.0479 | 0.0526 | |
| 0.1500 | 0.1076 | 0.0868 | |
| (Δ | 0.586/−0.602 | 0.825/−0.399 | 0.823/−0.678 |
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| Empirical formula | C24H34N4O18Zn2 | C30H32N6O12Cu2 | C12H9N2O6Cu2 |
| Formula weight | 797.29 | 795.69 | 404.29 |
| Crystal system | Triclinic | Monoclinic | Monoclinic |
| Space group |
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| 7.1623(7) | 6.4617(3) | 16.3272(7) | |
| 8.3966(8) | 25.5232(9) | 10.4575(4) | |
| 13.4476(10) | 10.1083(5) | 15.0472(7) | |
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| 106.056(8) | 90 | 90 |
| 104.078(8) | 106.321(5) | 102.188(5) | |
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| 90.547(8) | 90 | 90 |
| 751.27(12) | 1599.91(13) | 2511.27(19) | |
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| 1 | 2 | 8 |
| 1.762 | 1.652 | 2.139 | |
| Radiation, | 1.54184 | 0.71073 | 1.54184 |
| μ (mm−1) | 2.785 | 1.404 | 4.522 |
| Temperature (K) | 100(2) | 299.0(2) | 100(2) |
| Measd/independent reflns ( | 4859/2943 | 3877/2762 | 4290/2480 |
| Parameters refined | 225 | 233 | 204 |
| GoF (on | 1.087 | 0.954 | 1.097 |
| 0.0638 | 0.0433 | 0.0501 | |
| 0.1890 | 0.0978 | 0.1471 | |
| (Δ | 0.957/−1.077 | 0.450/−0.496 | 1.587/−1.066 |
aR1 = Σ(|Fo| − |Fc|)/Σ(|Fo|). b wR2 = {Σ[w(Fo2 − Fc2)2]/Σ[w(Fo2)2]}1/2.
Figure 1Representation of the mononuclear complex 1. Color code: Zn, turquoise; N, navy blue; O, red; C, grey.
Figure 2Representation of the repeating unit (left) and a part of the 1D double chain of 2 (right). Color code: Zn, cyan; N, navy blue; O, red; C, grey. The hydrogen atoms are omitted for clarity.
Figure 3Representation of the repeating unit (top) and a part of the 2D chain of 3 (bottom). Color code: Zn2+, turquoise; N, navy blue; O, red; C, grey. The hydrogen atoms are omitted for clarity.
Figure 4Representation of the molecular structure of the dinuclear complex 4. Color code: Co2+, purple; N, navy blue; O, red; C, grey. The hydrogen atoms are omitted for clarity.
Figure 5Representation of the repeating unit (left) and a part of the double 1D chain of 6 (right). Color code: Cu, blue; N, navy blue; O, red; C, grey. The hydrogens are omitted for clarity.
Figure 6Representation of the repeating unit (left) and a part of the 1D double chain of 8 (right). Color code: CuII, green; N, blue; O, red; C, grey. The hydrogen atoms are omitted for clarity.
Figure 7Representations of the repeating unit (left) in 9 and its [Cu4(μ3-OH)2]6+ butterfly” shaped core (right). Color code: CuII, green; N, blue; O, red; C, grey. The hydrogen atoms are omitted for clarity, except from the hydrogens of the hydroxyl groups, which are cyan.
Figure 8Left: metal adsorption capacity (mg g−1) versus time (h) plot; right: simulation of the experimental data to the pseudo-second order kinetic model. The solid lines represent the fitting of the data.
Figure 9Left: Equilibrium data for the metal adsorption by 9 (contact time: 20 min); right: fitting of the metal adsorption data to the Langmuir model.
Figure 10EDX spectra of 9 (left) and Fe@9 (right).
Figure 11χMT vs. T plot for 9 (circles) Fe@9-1 (triangles) and Fe@9-2 (squares). Solid line represents the best fit for 9. Inset: the exchange interactions in 9.