Oxalate chloride
Appearance
An oxalate chloride is a mixed anion compound contains both oxalate and chloride anions.
Related compounds include oxalate fluorides[1] and oxalate bromides.[2]
List
name | formula | crystal | space group | cell | volume | density | comment | ref |
---|---|---|---|---|---|---|---|---|
Novgorodovaite | Ca2(C2O4)Cl2•2H2O | monoclinic | I2/m | a= 6.936 b= 7.382 c= 7.443 β= 94.3° | loses water over 205°C; refract: α=1.500 β=1.545 γ=1.568 2V=71° (−) | [3][4][5] | ||
Ca2(C2O4)Cl2•7H2O | triclinic | P1 | a = 7.3928 b = 8.9925 c = 10.484 α = 84.070 β = 70.95 γ = 88.545° | 655.3 | looses water at 25°C to 2H2O; refract: α=1.571 β=1.648 γ=1.718 2V=87° (−) | [3][6] | ||
Ca4(C2O4)3Cl2•8H2O | dubious | [3] | ||||||
octakis(ethyl(dimethyl)ammonium) dodecakis(μ-oxalato)-tetrachloro-tetra-chromium-tetra-manganese | [NH(CH3)2(C2H5)]8[Mn4Cl4Cr4(C2O4)12] | monoclinic | P21 | a=13.8321 b=17.1042 c=20.4209 β=91.874° | [7] | |||
octakis(diethyl(methyl)ammonium) dodecakis(μ-oxalato)-tetrachloro-tetra-chromium-tetra-manganese | [NH(CH3)(C2H5)2]8[Mn4Cl4Cr4(C2O4)12] | monoclinic | P21 | a=14.1863 b=17.3479 c=20.4140 β=91.937° | [7] | |||
tetrakis(methylammonium) tetrakis(μ-oxalato)-octachloro-tetra-iron(iii) pentahydrate | (MeNH3)2[Fe2(ox)2Cl4]·2.5H2O | monoclinic | P21/c | a 10.7832 b 13.913 c 13.0578 β 104.060° | [8] | |||
methylammonium (μ-hydroxo)-bis(μ-oxalato)-dichloro-di-iron(iii) trihydrate | MeNH3[Fe2(OH)(ox)2Cl2]·2H2O | monoclinic | Cc | a=8.945 b=14.936 c=12.408 β=108.531° | [8] | |||
methylammonium oxonium bis(μ-oxalato)-(μ-oxo)-dichloro-di-iron(iii) dihydrate | (H3O)(MeNH3)[Fe2O(ox)2Cl2]·3H2O | orthorhombic | Fdd2 | a=14.914 b=23.507 c=9.261 | [8] | |||
(dimim)2[Fe2Cl4(μ-ox)] | ionic liquid | [9] | ||||||
L2=1,4-bis(imidazol-1-ylmethyl)benzene
bis(1,1'-(1,4-Phenylenebis(methylene))bis-1H-imidazol-3-ium) (μ2-oxalato)-tetrachloro-bis(oxalato)-di-iron(iii) |
(H2-L2)2{Fe2(C2O4)3Cl4} | triclinic | P1 | a 10.6758 b 10.7457 c 10.8774 α 113.219° β 109.138° γ 99.294° Z=1 | 1020.8 | 1.624 | emerald | [10] |
tetramelaminium trioxalatoferrate(III) chloride dihydrate | (C3H7N6)4{Fe(C2O4)3}Cl·2H2O | monoclinic | P21/c | a=11.597 b=22.299 c=13.655 β=94.344° Z=4 | 3521 | 1.698 | green | [11] |
methylammonium (μ-aqua)-tris(μ-chloro)-(μ-oxalato)-iron(iii)-potassium | K(MeNH3)[Fe(ox)Cl3(H2O) | monoclinic | P21/m | a=8.725 b=7.508 c=9.026 β=112.421° | [8] | |||
diethylmethylammonium | [NH(CH3)(C2H5)2][FeCl2(C2O4)] | P21/c | a=8.5125 b=10.775 c=14.9703 β=104.798° Z=4 | 1327.6 | 1.516 | yellow; proton conductor | [12] | |
C(NH2)3Cd(C2O4)Cl(H2O)·H2O | triclinic | P1 | a =6.8136 b =7.4890 c =10.0515 α =84.082° β =77.806° γ =88.813° | band gap 3.76 eV | [13] | |||
BaCd(C2O4)1.5Cl(H2O)2 | monoclinic | C2/c | a=23.101 b=8.253 c=10.040 β 99.14° | band gap 4.53 eV | [13] | |||
La(C2O4)Cl | [14] | |||||||
La(C2O4)Cl·3H2O | [15] | |||||||
Ce(C2O4)Cl | [1] | |||||||
Ce(C2O4)Cl·3H2O | [15] | |||||||
Pr(C2O4)Cl·3H2O | stable to 163°C | [15][1] | ||||||
Nd(C2O4)Cl·3H2O | stable to 167°C; dec 510° to NdOCl | [15][1][16] | ||||||
Sm(C2O4)Cl·3H2O | stable to 174°C; dec at 347° to EuC2O4 | [15][1] | ||||||
Eu(C2O4)Cl·3H2O | stable to 178°C | [15][1] | ||||||
Gd(C2O4)Cl·3H2O | [15] |
References
- ^ a b c d e f Mulokozi, A.M.; Weigel, F. (1973-05). "Differential thermal analysis studies of some rare earth metal oxalato halide-hydrates". Journal of Inorganic and Nuclear Chemistry. 35 (5): 1487–1492. doi:10.1016/0022-1902(73)80236-2.
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(help) - ^ Lugwisha, E. H. J.; Mulokozi, A. M.; Masabo, M. K. J. (1991-11). "Activation energy of thermal decomposition of LaC2O4Br". Journal of Thermal Analysis. 37 (11–12): 2567–2572. doi:10.1007/BF01912801. ISSN 0368-4466.
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(help) - ^ a b c Jones, Francis T.; White, Lawrence M. (1946-07). "The Composition, Optical and Crystallographic Properties of Two Calcium Oxalate-Chloride Double Salts". Journal of the American Chemical Society. 68 (7): 1339–1342. doi:10.1021/ja01211a075. ISSN 0002-7863.
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(help) - ^ Baran, Enrique J. (2014-12-17). "Review: Natural oxalates and their analogous synthetic complexes". Journal of Coordination Chemistry. 67 (23–24): 3734–3768. doi:10.1080/00958972.2014.937340. ISSN 0095-8972.
- ^ Rastsvetaeva, R. K.; Chukanov, N. V.; Nekrasov, Yu. V. (2001). "[No title found]". Doklady Chemistry. 381 (1/3): 329–331. doi:10.1023/A:1012984825792.
- ^ Piro, Oscar E.; Echeverría, Gustavo A.; González-Baró, Ana C.; Baran, Enrique J. (2018-02). "Crystal structure and spectroscopic behavior of synthetic novgorodovaite Ca2(C2O4)Cl2·2H2O and its twinned triclinic heptahydrate analog". Physics and Chemistry of Minerals. 45 (2): 185–195. doi:10.1007/s00269-017-0907-0. ISSN 0342-1791.
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(help) - ^ a b Lozančić, Ana; Renka, Sanja; Barišić, Dario; Burazer, Sanja; Molčanov, Krešimir; Pajić, Damir; Jurić, Marijana (2023-06-19). "High Proton Conductivity of Magnetically Ordered 2D Oxalate-Bridged [Mn II Cr III ] Coordination Polymers with Irregular Topology". Inorganic Chemistry. 62 (24): 9418–9428. doi:10.1021/acs.inorgchem.3c00443. ISSN 0020-1669.
- ^ a b c d Mastropietro, Teresa F.; Marino, Nadia; Munno, Giovanni De; Lloret, Francesc; Julve, Miguel; Pardo, Emilio; Armentano, Donatella (2016-11-07). "Selective Guest Inclusion in Oxalate-Based Iron(III) Magnetic Coordination Polymers". Inorganic Chemistry. 55 (21): 11160–11169. doi:10.1021/acs.inorgchem.6b01769. ISSN 0020-1669.
- ^ Cot, Sergi; Leu, Meike K.; Kalamiotis, Alexis; Dimitrakis, Georgios; Sans, Victor; de Pedro, Imanol; Cano, Israel (2019-07). "An Oxalate‐Bridged Binuclear Iron(III) Ionic Liquid for the Highly Efficient Glycolysis of Polyethylene Terephthalate under Microwave Irradiation". ChemPlusChem. 84 (7): 786–793. doi:10.1002/cplu.201900075. ISSN 2192-6506.
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(help) - ^ Wang, Lei; Wang, Wenqiang; Guo, Dong; Zhang, Ao; Song, Yaoguang; Zhang, Yiheng; Huang, Keke (2014). "Design and syntheses of hybrid supramolecular architectures: based on [Fe(C 2 O 4 ) 3 ] 3− metallotectons and diverse organic cations". CrystEngComm. 16 (24): 5437–5449. doi:10.1039/C4CE00357H. ISSN 1466-8033.
- ^ Wang, Lei; Wang, Wenqiang; Guo, Dong; Zhang, Ao; Song, Yaoguang; Zhang, Yiheng; Huang, Keke (2014). "Design and syntheses of hybrid supramolecular architectures: based on [Fe(C 2 O 4 ) 3 ] 3− metallotectons and diverse organic cations". CrystEngComm. 16 (24): 5437–5449. doi:10.1039/C4CE00357H. ISSN 1466-8033.
- ^ Burazer, Sanja; Molčanov, Krešimir; Šantić, Ana; Klaser, Teodoro; Wenger, Emmanuel; Pajić, Damir; Jagličić, Zvonko; Popović, Jasminka; Jurić, Marijana (2021-09-24). "Humidity-Sensing Properties of an 1D Antiferromagnetic Oxalate-Bridged Coordination Polymer of Iron(III) and Its Temperature-Induced Structural Flexibility". Materials. 14 (19): 5543. doi:10.3390/ma14195543. ISSN 1996-1944.
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: CS1 maint: unflagged free DOI (link) - ^ a b Xu, Wei; Ma, Liang; Lv, Yi-Lei; Ma, Si-Yu; Liu, Wenlong; Guo, Sheng-Ping; Tang, Ru-Ling (2023-12-19). "C(NH 2 ) 3 Cd(C 2 O 4 )Cl(H 2 O)·H 2 O and BaCd(C 2 O 4 ) 1.5 Cl(H 2 O) 2 : Two Oxalate Chlorides Obtained by Chemical Scissors Strategy Exhibiting Low-Dimensional Structural Networks and Balanced Overall Optical Properties". Inorganic Chemistry. doi:10.1021/acs.inorgchem.3c04154. ISSN 0020-1669.
- ^ Hölsä, Jorma; Koriseva, Eija (1991-08). "Thermal decomposition of LaC2O4Cl·3H2O : Eu3+: a high-resolution luminescence spectroscopy study". Thermochimica Acta. 185 (1): 25–33. doi:10.1016/0040-6031(91)80114-X.
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(help) - ^ a b c d e f g Möbius, R.; Matthes, F. (1964-06). "Über die Verhältnisse beim Austausch von Oxalationen gegen Chloridionen bei Oxalathydraten der Seltenen Erden und des Yttriums". Zeitschrift für Chemie. 4 (6): 234–235. doi:10.1002/zfch.19640040618. ISSN 0044-2402.
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(help) - ^ Mulokozi, A. M.; Zuru, A. A. (1989-11). "Activation energy of thermal decomposition of fully dehydrated NdC2O4Cl·3H2O to NdOCl". Journal of Thermal Analysis. 35 (7): 2359–2366. doi:10.1007/BF01911900. ISSN 0368-4466.
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