Synthesis, spectroscopic, thermal, crystal structure properties and characterization of new Hofmann-type-like clathrates with 4-aminopyridine and water

Yıl: 2021 Cilt: 45 Sayı: 3 Sayfa Aralığı: 616 - 633 Metin Dili: İngilizce DOI: 10.3906/kim-2011-29 İndeks Tarihi: 28-06-2022

Synthesis, spectroscopic, thermal, crystal structure properties and characterization of new Hofmann-type-like clathrates with 4-aminopyridine and water

Öz:
In this study, synthesis of two new heteronuclear tetracyanonickelate(II) clathrates based on 4-aminopyridine (4AP) and guest water $(H_2O)$ molecule and investigation of their structural properties were reported. These clathrates were characterized by using vibration spectroscopy, elemental, thermal analysis and single crystal X-ray diffraction (SC-XRD) techniques. Examining the elemental and spectral data of these clathrates, it was observed that the formulas $[Zn(II)(4AP)_2 Ni(µ-CN)_2 (CN)_2 ]·6H_2 O$ and $[Cu(II)(4AP)_4 Ni(µCN)_2 (CN)_2 ]·H_2O$ were defined their structures. General information about the structural properties of these clathrates in single crystal form has been obtained by considering the changes in the characteristic peaks of the cyanide group and the 4AP that formed them. The thermal behaviors of these clathrates were obtained by examining the temperature-dependent changes of their masses. The magnetic susceptibilities of these clathrates in single crystal form were measured with a Gouy balance. According to the data obtained using SC-XRD technique, the heterometallic $[Zn(II)(4AP)_2 Ni(µ-CN)_2 (CN)_2 ]·6H_2O$ compound has Cmcm and the heterometallic $[Cu(II) (4AP)_4 Ni(µ-CN)_2 (CN)_2 ]·H_2O$ compound has crystal structures in the C2/c space group.
Anahtar Kelime:

Belge Türü: Makale Makale Türü: Araştırma Makalesi Erişim Türü: Erişime Açık
  • 1. Hofmann KA, Küspert F. Verbindungen von kohlenwasserstoffen mit metallsalzen. Zeitschrift Für Anorganische Chemie 1897; 15 (1): 204-207. doi: 10.1002/zaac.18970150118
  • 2. Wells AF. Structural Inorganic Chemistry. Oxford, England: Oxford Clarendon Press, 1962.
  • 3. Richard J, Lewis Sr. Hawley’s Condensed Chemical Dictionary. New York, NY, USA: Wiley & Sons, Inc., 2001.
  • 4. Iwamoto T. The Hofmann-type and related inclusion compounds. In: Atwood JL, Davies JED, MacNicol DD (editors). Inclusion Compounds. London, UK: Academic Press, 1984, pp. 29-57.
  • 5. Nakamoto K. Infrared and Raman Spectra of Inorganic and Coordination Compounds. Part B: Applications in Coordination, Organometallic, and Bioinorganic Chemistry. Hoboken, NJ, USA: John Wiley and Sons, 2009.
  • 6. Kartal Z. Synthesis, spectroscopic, thermal and structural properties of [M(3-aminopyridine)2 $Ni(µ-CN)_2(CN)_2]_n (M(II) = Co and Cu)$ heteropolynuclearcyano-bridged complexes. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 2015; 152: 577-583. doi: 10.1016/j.saa.2014.12.117
  • 7. Kartal Z, Şahin O, Yavuz A. The synthesis of two new Hofmann-type $M(3-aminopyridine)_2Ni(CN)_4$[M = Zn(II)and Cd(II)] complexes and the characterization of their crystal structure by various spectroscopic methods. Journal of Molecular Structure 2018; 1171: 578-586. doi: 10.1016/j.molstruc.2018.06.042
  • 8. Jose SP, Mohan S. Vibrational spectra and normal co-ordinate analysis of 2-aminopyridine and 2-amino picoline. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 2006; 64 (1): 240-245. doi: 10.1016/j.saa.2005.06.043
  • 9. Baran J, Malarski Z, Sobczyk L,Grech E. Polarized i.r. spectra of 4-aminopyridine hemiperchlorate single crystal. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 1988; 44A (10): 933-939. doi: 10.1016/0584-8539(88)80209-5
  • 10. Akyüz S, Dempster AB, Morehouse RL, Suzuki S. An infrared and Raman spectroscopic study of some metal pyridine tetracyanonickelate complexes. Journal of Molecular Structure 1973; 17 (1): 105-125. doi: 10.1016/0022-2860(73)85047-1
  • 11. Kitazawa T, Gomi Y, Takahashi M, Takeda M, Enomoto M, Miyazaki A et al. Spin-crossover behaviour of the coordination polymer$Fe^{II}(C_5H5N)_2NiII(CN)_4$. Journal of Materials Chemistry 1996; 6 (1): 119. doi: 10.1039/jm9960600119
  • 12. Okabayashi J, Ueno S, Kawasaki T, Kitazawa T. Ligand 4-X pyridine (X=Cl, Br, I) dependence in Hofmann-type spin crossover complexes:$Fe(4-Xpyridine)_2[Au(CN)_2]_2$ . Inorganica Chimica Acta 2016; 445: 17-21. doi: 10.1016/j.ica.2016.01.024
  • 13. Akyüz S. The FT-IR spectra of transition metal 3-aminopyridine tetracyanonickelate complexes. Journal of Molecular Structure 1998; 449: 23-27. doi: 10.1016/S0022-2860(98)00328-7
  • 14. Carmona P, Molina M, Escobar R. Studies on aminopyridines in aqueous solution by laser Raman spectroscopy. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 1993; 1: 1-9. doi: 10.1016/0584-8539(93)80255-9
  • 15. Akyüz S. The FT-IR spectroscopic investigation of transition metal(II) 4-aminopyridine tetracyanonickelate complexes. Journal of Molecular Structure 1999; 482-483: 171-174. doi: 10.1016/s0022-2860(98)00638-3
  • 16. Topacli A, Bayarı S. Normal coordinate analysis of 4-aminopyridine. Effect of substituent on pyridine ring in metal complexes of 4-substituted pyridines.Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 2001; 57: 1385-1391. doi: 10.1016/S1386- 1425(00)00480-7
  • 17. Smékal Z, Císařová I, Mroziński J. Cyano-bridged bimetallic complexes of copper(II) with tetracyanonickelate(II). Crystal structure of $[Cu(dpt)Ni(CN)_4]$. Polyhedron 2001; 20: 3301-3306. doi: 10.1016/S0277-5387(01)00942-1
  • 18. Buyukmurat Y, Akyuz S. Theoretical and experimental studies of IR spectra of 4-aminopyridine metal(II) complexes. Journal of Molecular Structure 2003; 651-653: 533-539. doi: 10.1016/S0022-2860(02)00674-9
  • 19. Ivanova BB, Mayer-Figge H. Crystal structure and solid state IR-LD analysis of a mononuclear Cu(II) complex of 4-aminopyridine. Journal of Coordination Chemistry 2005; 58 (8): 653-659. doi: 10.1080/00958970412331336295
  • 20. Arnaudov MG, Ivanova BB, Dinkov SG. A reducing-difference IR-spectral study of 4-aminopyridine. Central European Journal of Chemistry 2004; 2 (4): 589-597. doi: 10.2478/BF02482723
  • 21. Arnaudov MG, Ivanova BB, Dinkov SG. A solid-state linear dichroic infrared spectral study of 4-aminopyridine. Vibrational Spectroscopy 2005; 37: 145-147. doi: 10.1016/j.vibspec.2004.08.003
  • 22. Dwivedi A, Siddiqui SA, Pandey AK, Prasad O, Sinha L et al. Quantum chemical study and the effect of substitution of amino group on the reactivity of 4-aminopyridine and 3,4-diaminopyridine by density functional theory. Der Pharma Chemica 2009; 1 (2): 258-268.
  • 23. Andrade GFS, Temperini MLA. Adsorption of 4-aminopyridine on Co and Ag electrodes probed by SERS. Vibrational Spectroscopy 2010; 54: 148-154. doi: 10.1016/j.vibspec.2010.08.012
  • 24. Akyuz S, Akyuz T. Adsorption of 3- and 4-aminopyridine on loughlinite-An IR spectroscopic study. Vibrational Spectroscopy 2010; 53: 136-139. doi: 10.1016/j.vibspec.2010.01.007
  • 25. Alfred S, Raj C, Arockiaswamy S. Microwave assisted nano structured tetrakis (4- aminopyridine) copper(II) tetrachloro cobaltate(II). International Journal of ChemTech Research 2012; 4 (3): 870-876.
  • 26. Zheng XF, Zhu LG. Topologies and solid electric conductivities of two diverse silver 4-sulfobenzoate coordination polymers controlled by uncoordination and coordination 4-aminopyridine ligands. Journal of Molecular Structure 2013; 1039: 1-7. doi: 10.1016/j. molstruc.2013.01.072
  • 27. Dhaveethu K, Padmavathy S, Ramachandramoorthy T, Thirunavukkarasu K. Green synthesis, spectral, thermal and biological investigations of Cr(III), Ni(II) and Cu(II) complexes of 4-aminopyridine and nitrito ligands. World Journal of Pharmacy and Pharmaceutical Sciences 2014; 3 (7): 1381-1401.
  • 28. Dojer B, Pevec A, Belaj F, Kristl M. Two new zinc(II) acetates with 3- and 4-aminopyridine: syntheses and structural properties. Acta Chimica Slovaca 2015; 62: 312-318. doi: 10.17344/acsi.2014.1111
  • 29. Mielcarek A, Wiśniewska A, Dołęga A. Unassisted formation of hemiaminal ether from 4-aminopyridine and o-vanillin - experimental and theoretical study. Structural Chemistry 2018; 29: 1189-1200. doi: 10.1007/s11224-018-1105-5
  • 30. Meija J, Coplen TB, Berglund M, Brand WA, De Bièvre P et al. Atomic weights of the elements 2013 (IUPAC Technical Report). Pure and Applied Chemistry 2016; 88 (3): 265-291. doi: 10.1515/pac-2015-0305
  • 31. Loewenschuss A, Marcus Y. Standard Thermodynamic Functions of Some Isolated Ions at 100–1000 К. Journal of Physical and Chemical Reference Data 1996; 25 (6): 1495-1507. doi: 10.1063/1.555990
  • 32. Sheldrick GM. A short history of SHELX. Acta Crystallographica 2008; A64: 112-122. doi: 10.1107/S0108767307043930
  • 33. Sheldrick GM. Crystal structure refinement with SHELXL. Acta Crystallographica 2015; C71: 3-8. doi: 10.1107/S2053229614024218
  • 34. Bruker AXS Inc. Bruker APEX2 (Version 2014.11.0). Madison, WI, USA: Bruker AXS Inc., 2014.
  • 35. Macrae CF, Bruno IJ, Chisholm JA, Edgington PR, Patrick MC et al. Mercury CSD 2.0 – New features for the visualization and investigation of crystal structures. Journal of Applied Crystallography 2008; 41: 466-470. doi: 10.1107/S0021889807067908
  • 36. Farrugia LJ. WinGX and ORTEP for Windows: an update. Journal of Applied Crystallography 2012; 45: 849-854. doi: 10.1107/ S0021889812029111
  • 37. Kartal Z, Şahin O, Yavuz A. Synthesis of Hofmann-type $Zn(H_2O)_2Ni(CN)_4.$nG (G = water and 1,4-dioxane) clathrates and the determination of their structural properties by various spectroscopic methods. Turkish Journal of Chemistry 2019; 43 (6): 1608-1621. doi: 10.3906/kim1906-26
  • 38. Qin YL, Yang BW, Wang GF, Sun H. A cyanide-bridged heterometallic coordination polymer constructed from square-planar $[Ni(CN)_4]^{2−}:4synthesis, crystal structure, thermal decomposition, electron paramagnetic resonance (EPR) spectrum and magnetic properties. Acta Crystallographica Section C Structural Chemistry 2016; 72 (7): 555-560.
  • 39. Karaağaç D, Kürkçüoğlu GS, Yeşilel OZ, Hökelek T. Two dimensional cyano-bridged hetero-metallic coordination polymers containing metal⋅⋅⋅π interactions. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 2014; 121: 196-204. doi: 10.1016/j. saa.2013.10.033
  • 40. Khoma RE, Gelmboldt VO, Baumer VN, Shishkin OV, Koroeva LV. Synthesis and structure of aminoguanidinium sulfite monohydrate. Russian Journal of Inorganic Chemistry 2013; 58 (7): 843-847. doi: 10.1134/s0036023613070140
  • 41. Sharpe AG. The chemistry of cyano complexes of the transition metals. London, England: Academic Press, 1976.
  • 42. McCullough RL, Jones LH, Crosby GA. An analysis of the vibrational spectrum of the tetracyanonickelate(II) ion in a crystal lattice. Spectrochimica Acta 1960; 16 (8): 929-944. doi: 10.1016/0371-1951(60)80057-4
  • 43. Jones LH. Inorganic vibrational spectroscopy. New York, NY, USA: Dekker, 1971.
  • 44. Sayın E, Kürkçüoğlu GS. Syntheses, structures and physical properties of cyanide-bridged M(II) −Ni(II) bimetallic complexes with 2-pyridineethanol (M(II) = Fe, Co and Ni). Anadolu University Journal of Science and Technology A: Applied Sciences and Engineering 2016; 17 (1): 37-49. doi: 10.18038/btda.57780
  • 45. Kartal Z, Şahin O. The synthesis of heteroleptic cyanometallate aminopyridine complexes and an investigation into their structural properties with various spectroscopic methods. Journal of Molecular Structure 2021; 1227. doi: 10.1016/j.molstruc.2020.129514
  • 46. Praprotnik M, Janežič D, Mavri J. Temperature dependence of water vibrational spectrum: a molecular dynamics simulation study. Journal of Physical Chemistry A 2004; 108: 11056-11062. doi: 10.1021/jp046158d
  • 47. Carey DM, Korenowski GM. Measurement of the Raman spectrum of liquid water. Journal of Chemical Physics 1998; 108 (7): 2669-2675. doi: 10.1063/1.475659
  • 48. Zhang C, Khaliullin RZ, Bovi D, Guidoni L, Kühne TD. Vibrational signature of water molecules in asymmetric hydrogen bonding environments. Journal of Physical Chemistry Letters 2013; 4 (19): 3245-3250. doi: 10.1021/jz401321x
  • 49. Yuge H, Kim CH, Iwamoto T, Kitazawa T. Hofmann-$H_2O-type and $Hofmann-H_2O-T_d$ -type host structures accommodating 1,4-dioxane: crystal structures of trans-bis (morpholine-N) cadmium(II) tetracyanonickelate(II), transdiaquacadmium(II) tetracyanonickelate(II)- (1,4-dioxane)(1/2) and trans-diaquacadmium(II) tetracyanocadmate(II)(1,4-dioxane)(1/2). Inorganica Chimica Acta 1997; 257: 217-224. doi: 10.1016/S0020-1693(96)05484-9
  • 50. Lu R, Chen Y, Zhou H, Yuan A. M$(H_2O)_2[Ni(CN)_4]•xH_2O$. Acta Chimica Sinica 2010; 68 (12): 1199-1204.
  • 51. Rodríguez-Hernández J, Lemus-Santana AA, Vargas CN, Regue E. Three structural modifications in the series of layered solids$T(H_2O)_2[Ni(CN)4].xH_2$ O with T = Mn, Co, Ni: their nature and crystal structures. Comptes Rendus Chimie 2012; 15: 350-355. doi: 10.1016/j.crci.2011.11.004
  • 52. Alowasheeir A, Tominaka S, Ide Y, Yamauchi Y, Matsushita Y. Two-dimensional cyano-bridged coordination polymer of $Mn(H_2O)_2[Ni(CN)_4]$: structural analysis and proton conductivity measurements upon dehydration and rehydration. Crystal Engineering Communications 2018; 20 (42): 6713-6720. doi: 10.1039/C8CE01400K
APA KARTAL Z, Şahin O (2021). Synthesis, spectroscopic, thermal, crystal structure properties and characterization of new Hofmann-type-like clathrates with 4-aminopyridine and water. , 616 - 633. 10.3906/kim-2011-29
Chicago KARTAL Zeki,Şahin Onur Synthesis, spectroscopic, thermal, crystal structure properties and characterization of new Hofmann-type-like clathrates with 4-aminopyridine and water. (2021): 616 - 633. 10.3906/kim-2011-29
MLA KARTAL Zeki,Şahin Onur Synthesis, spectroscopic, thermal, crystal structure properties and characterization of new Hofmann-type-like clathrates with 4-aminopyridine and water. , 2021, ss.616 - 633. 10.3906/kim-2011-29
AMA KARTAL Z,Şahin O Synthesis, spectroscopic, thermal, crystal structure properties and characterization of new Hofmann-type-like clathrates with 4-aminopyridine and water. . 2021; 616 - 633. 10.3906/kim-2011-29
Vancouver KARTAL Z,Şahin O Synthesis, spectroscopic, thermal, crystal structure properties and characterization of new Hofmann-type-like clathrates with 4-aminopyridine and water. . 2021; 616 - 633. 10.3906/kim-2011-29
IEEE KARTAL Z,Şahin O "Synthesis, spectroscopic, thermal, crystal structure properties and characterization of new Hofmann-type-like clathrates with 4-aminopyridine and water." , ss.616 - 633, 2021. 10.3906/kim-2011-29
ISNAD KARTAL, Zeki - Şahin, Onur. "Synthesis, spectroscopic, thermal, crystal structure properties and characterization of new Hofmann-type-like clathrates with 4-aminopyridine and water". (2021), 616-633. https://doi.org/10.3906/kim-2011-29
APA KARTAL Z, Şahin O (2021). Synthesis, spectroscopic, thermal, crystal structure properties and characterization of new Hofmann-type-like clathrates with 4-aminopyridine and water. Turkish Journal of Chemistry, 45(3), 616 - 633. 10.3906/kim-2011-29
Chicago KARTAL Zeki,Şahin Onur Synthesis, spectroscopic, thermal, crystal structure properties and characterization of new Hofmann-type-like clathrates with 4-aminopyridine and water. Turkish Journal of Chemistry 45, no.3 (2021): 616 - 633. 10.3906/kim-2011-29
MLA KARTAL Zeki,Şahin Onur Synthesis, spectroscopic, thermal, crystal structure properties and characterization of new Hofmann-type-like clathrates with 4-aminopyridine and water. Turkish Journal of Chemistry, vol.45, no.3, 2021, ss.616 - 633. 10.3906/kim-2011-29
AMA KARTAL Z,Şahin O Synthesis, spectroscopic, thermal, crystal structure properties and characterization of new Hofmann-type-like clathrates with 4-aminopyridine and water. Turkish Journal of Chemistry. 2021; 45(3): 616 - 633. 10.3906/kim-2011-29
Vancouver KARTAL Z,Şahin O Synthesis, spectroscopic, thermal, crystal structure properties and characterization of new Hofmann-type-like clathrates with 4-aminopyridine and water. Turkish Journal of Chemistry. 2021; 45(3): 616 - 633. 10.3906/kim-2011-29
IEEE KARTAL Z,Şahin O "Synthesis, spectroscopic, thermal, crystal structure properties and characterization of new Hofmann-type-like clathrates with 4-aminopyridine and water." Turkish Journal of Chemistry, 45, ss.616 - 633, 2021. 10.3906/kim-2011-29
ISNAD KARTAL, Zeki - Şahin, Onur. "Synthesis, spectroscopic, thermal, crystal structure properties and characterization of new Hofmann-type-like clathrates with 4-aminopyridine and water". Turkish Journal of Chemistry 45/3 (2021), 616-633. https://doi.org/10.3906/kim-2011-29