Simultaneous formation of non-oxidovanadium(iv) and oxidovanadium(v) complexes incorporating phenol-based hydrazone ligands in aerobic conditions. (17th February 2020)
- Record Type:
- Journal Article
- Title:
- Simultaneous formation of non-oxidovanadium(iv) and oxidovanadium(v) complexes incorporating phenol-based hydrazone ligands in aerobic conditions. (17th February 2020)
- Main Title:
- Simultaneous formation of non-oxidovanadium(iv) and oxidovanadium(v) complexes incorporating phenol-based hydrazone ligands in aerobic conditions
- Authors:
- Biswas, Nirmalendu
Bera, Sachinath
Sepay, Nayim
Pal, Amrita
Halder, Tanmoy
Ray, Sudipta
Acharyya, Swarnali
Biswas, Anup Kumar
Drew, Michael G. B.
Ghosh, Tapas - Abstract:
- Abstract : A family of non-oxidovanadium(iv ) complexes incorporating multidentate hydrazone ligands were synthesized through a thermodynamically unfavourable process along with oxidovanadium(v ) species. Abstract : A new family of non-oxidovanadium(iv ) [V IV (L)2 ] (1–4 ) complexes along with methoxy bonded oxidovanadium(v ) [V V O(L)(OCH3 )] (5 and 6 ) and [V V O(L)(OCH3 )]2 (7 and 8 ) complexes have been synthesized by refluxing [V IV O(aa)2 ] [aa − being the deprotonated form of acetylacetone (Haa)] with a family of hydrazone ligands (H2 L 1–4, general abbreviation H2 L, obtained by the condensation of 2-aminobenzoylhydrazide with 2-hydroxyacetophenone and its 5-substituted derivatives) using laboratory grade methanol as a solvent in the presence of air in ∼30% yield. The DFT calculated changes in Gibbs free energy (Δ G ), enthalpy (Δ H ) and internal energy (Δ E ) for the reaction to form complexes 1–4 in methanol: 2H2 L + [V IV O(aa)2 ] + ¼O2 + CH3 OH → [V IV (L)2 ] + 2Haa + CH3 OH + ¼O2 are on average ∼10, ∼5 and ∼14 kcal mol −1 respectively, while these values for the reaction in methanol to form complexes 5–8 : 2H2 L + [V IV O(aa)2 ] + ¼O2 + CH3 OH → [V V O(L)(OCH3 )] + H2 L + 2Haa + ½H2 O are on average ∼−16, ∼−20 and ∼−12 kcal mol −1 respectively, suggesting that the formation of 1–4 is not thermodynamically feasible through this method. In practice, however, these complexes are also formed probably due to their very low solubility in methanol along withAbstract : A family of non-oxidovanadium(iv ) complexes incorporating multidentate hydrazone ligands were synthesized through a thermodynamically unfavourable process along with oxidovanadium(v ) species. Abstract : A new family of non-oxidovanadium(iv ) [V IV (L)2 ] (1–4 ) complexes along with methoxy bonded oxidovanadium(v ) [V V O(L)(OCH3 )] (5 and 6 ) and [V V O(L)(OCH3 )]2 (7 and 8 ) complexes have been synthesized by refluxing [V IV O(aa)2 ] [aa − being the deprotonated form of acetylacetone (Haa)] with a family of hydrazone ligands (H2 L 1–4, general abbreviation H2 L, obtained by the condensation of 2-aminobenzoylhydrazide with 2-hydroxyacetophenone and its 5-substituted derivatives) using laboratory grade methanol as a solvent in the presence of air in ∼30% yield. The DFT calculated changes in Gibbs free energy (Δ G ), enthalpy (Δ H ) and internal energy (Δ E ) for the reaction to form complexes 1–4 in methanol: 2H2 L + [V IV O(aa)2 ] + ¼O2 + CH3 OH → [V IV (L)2 ] + 2Haa + CH3 OH + ¼O2 are on average ∼10, ∼5 and ∼14 kcal mol −1 respectively, while these values for the reaction in methanol to form complexes 5–8 : 2H2 L + [V IV O(aa)2 ] + ¼O2 + CH3 OH → [V V O(L)(OCH3 )] + H2 L + 2Haa + ½H2 O are on average ∼−16, ∼−20 and ∼−12 kcal mol −1 respectively, suggesting that the formation of 1–4 is not thermodynamically feasible through this method. In practice, however, these complexes are also formed probably due to their very low solubility in methanol along with complexes 5–8 . The complexes were characterized by analytical and spectral methods. The structures of the H2 L 2 and H2 L 3 ligands and complexes 3 and 5–8 were determined by X-ray diffraction. Complexes 1–4 display quasi-reversible one-electron oxidation and reduction peaks in the potential windows of 0.66–0.70 and −0.22 to −0.39 V respectively while complexes 5–8 exhibit quasi-reversible one-electron reduction peaks in the 0.15–0.22 V region. The EPR spectral parameters indicate that the odd electron in complexes 1–4 is present in the d xy orbital, a suggestion which is also supported by a DFT study. The substituents in the aryloxy ring of the hydrazone ligands exhibited a significant effect on λ max for the LMCT transition, A ‖, E 1/2, E SOMO / E HOMO and E LUMO of the complexes. Complexes 1, 3, and 5–7 showed a wide range of toxicity in a dose dependent manner against lung cancer cells and they kill the cells through apoptosis. The binding ability of the complexes with CT DNA has been determined by a fluorescence emission study and the binding constant value obtained by this method was supported by a molecular docking study. … (more)
- Is Part Of:
- New journal of chemistry. Volume 44:Number 9(2020)
- Journal:
- New journal of chemistry
- Issue:
- Volume 44:Number 9(2020)
- Issue Display:
- Volume 44, Issue 9 (2020)
- Year:
- 2020
- Volume:
- 44
- Issue:
- 9
- Issue Sort Value:
- 2020-0044-0009-0000
- Page Start:
- 3700
- Page End:
- 3716
- Publication Date:
- 2020-02-17
- Subjects:
- Chemistry -- Periodicals
Chimie -- Périodiques
540 - Journal URLs:
- http://www.rsc.org/ ↗
http://www.rsc.org/is/journals/current/newjchem/njc.htm ↗ - DOI:
- 10.1039/c9nj06114b ↗
- Languages:
- English
- ISSNs:
- 1144-0546
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 6084.319900
British Library DSC - BLDSS-3PM
British Library STI - ELD Digital store - Ingest File:
- 12943.xml