Academic literature on the topic '2-Amino Benzoxazole; Antifungal activity; fe(II)'

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Journal articles on the topic "2-Amino Benzoxazole; Antifungal activity; fe(II)"

1

Indu, Raj, and Manjul Shrivastava Dr.Smt. "SYNTHESIS OF TRANSITION METAL ION COMPLEX OF 2-AMINOBENZOXAZOLE AND ANTIFUNGAL ACTIVITY AND ROLE IN PHARMACEUTICAL CHEMISTRY." International Journal of Engineering Technologies and Management Research 4, no. 12: SE (2017): 60–64. https://doi.org/10.5281/zenodo.1163005.

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<strong><em>In view of the fact that a large number of derivatives of benzoxazole have been found to exhibit a wide variety of antimicrobial activities. Heterocyclic compounds play an important role in medicinal chemistry and exhibit wide range of biological activities in pharmaceutical chemistry. Complexes of 2-aminobenzoxazole (L) with chloride of iron (II), was synthesized. The molar ratio metal: ligand in the reaction of the complex formation was 1:2. It should be noticed, that the reaction of all the metal salts yielded bis (ligand) complex of the general formula M (L) 2(CL) 2. The comple
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2

Deshmukh, S. R. "Novel Schiff Base Ligand and their Fe (III), Co (II) and Ni (II) Complexes: Spectroscopic Investigation and Biological Applications." INTERNATIONAL JOURNAL OF SCIENTIFIC RESEARCH IN ENGINEERING AND MANAGEMENT 09, no. 06 (2025): 1–9. https://doi.org/10.55041/ijsrem50878.

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Novel Schiff base ligand derived from condensation reaction between 3-Amino-4-Hydroxy Benzoic Acid and 2-hydroxy-5-nitrobenzaldehyde. Fe (III), Co (II) &amp; Ni (II) metal complexes were formed from the synthesized ligand. FT-IR, UV- Visible 1H-NMR &amp; HRMS Characterization studies were carried out for the confirmation of the structure and bonding of the synthesized ligand and its complexes. Complexes were tested for their antibacterial and antifungal activities using gram positive bacterial strains i.e. Staphylococcus aureus and Bacillus subtilis, gram negative bacterial strains i.e. Escher
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3

Pardaeva, Dildora, Aydin Tavman, Erol Erçag, et al. "Structural Characterization and Antibacterial, Antifungal, Antioxidant Activity of ONO Salicyl Based Schiff Base and its VO(II), Fe(III), Co(II), Ni(II), Cu(II), Zn(II), Pd(II) and Hg(II) Complexes." French-Ukrainian Journal of Chemistry 12, no. 1 (2024): 92–110. https://doi.org/10.17721/fujcv12i1p92-110.

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An ONO tridentate Schiff base derived from 3,5-dichlorosalicylaldehyde and 2-amino-4-methylphenol (H2L) and its complexes with VO(II), Fe(III), Co(II), Ni(II), Cu(II), Zn(II), Pd(II) and Hg(II) were synthesized and characterized. The structures of the complexes were confirmed by means of elemental analysis, molar conductivity, magnetic moment, UV-visible, fluorescence, FT-IR and NMR spectroscopy. The M:L ratio is 1:2 in Fe(III) and Co(II) complexes whereas 1:1 in the other complexes. It was observed that the Pd(II) complex is 1:1 ionic while the others are non-ionic according to molar conducti
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4

Deshpande, Dr Vilas G. "Study of Metal Complexes with Schiff Base Derived from 2-Amino-4, 6-dimethylbenzothiazole and Pyrrole-2- aldehyde." International Journal for Research in Applied Science and Engineering Technology 9, no. VIII (2021): 931–36. http://dx.doi.org/10.22214/ijraset.2021.37518.

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As it is proved that the transition metal complexes have drug activities, hence we have synthesized heterocyclic Schiff bases. Six complexes of Co(II), Ni(II), Fe(III), Mn(II), Cr(II) and Cu(II) Schiff bases have been prepared. All ligands and its metal complexes the structures of the complexes have been proposed by analytical data, conductivity measurement, magnetic moment, IR, 1H NMR spectra and thermal studies. Analytical data confirmed 1:2 (metal:ligand) stoichiometry and the spectral data suggest that all Fe(III), Mn(II), Cr(II), Ni(II) and Co(II) complexes have octahedral geometry where
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Kumar, Anuroop, Netra Pal Singh, Uma Agrawal, and Kaushal Kumar. "Synthesis, Characterization and Biological Activity of Ni(II), Cu(II) and Fe(III) Complexes Derived from N2,N6-bis(5-Mercapto-1,3,4-thiadiazol-2-yl)pyridine-2,6-dicarboxamide." Asian Journal of Chemistry 32, no. 7 (2020): 1691–96. http://dx.doi.org/10.14233/ajchem.2020.22627.

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Novel metal complexes of the type [M(L)X] (where M= Cu(II), Ni(II) and Fe(III), L = N2,N6-bis(5-mercapto-1,3,4-thiadiazol-2-yl)pyridine-2,6-dicarboxamide, X= Cl−, CH3COO−) were synthesized by the reaction of pyridine-2,6-dicarboxylic acid and 2-amino-5-mercepto-1,3,4-thiadiazole. The synthesized ligand was reacted in THF with metal salts (Cu, Ni and Fe) to form complexes. Deprotonated ligand shows tridentate nature and coordinate to metal ion to form pincer cavity. In all, complexes metals were surrounded by three nitrogen atom and other site coordinated by other groups (chloride, acetate). Al
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6

Hadi, Falah Haasan, and Hayder Obaid Jamel. "Preparation and characterization of a new ligand derived from the compounds 2-hydrazinobenzothiazole and 2-amino-6-methoxy benzothiazole and its complexes with some metal ions, evaluating its antibacterial activity, and studying its nanoscale properties." Journal of Kufa for Chemical Sciences 4, no. 1 (2024): 133–52. https://doi.org/10.36329/jkcm/2024/v4.i1.14177.

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New-type Schiff bases were prepared: [2-(benzoxazol-2-yl)-hydrazinyl diene][-2,1-diphenyl-N-(6-methoxybenzothiazol-2-yl)-2,1-diphenylethane]. -1-amine (L) of the mixture. 2-mercaptobenzoxazole was dissolved with hydrazine in absolute ethanol as a first stage to form compound A. while the ligand was obtained in its final from the reaction of compound A with both benzal and 2-amino-6-methoxybenzothiazole. The complex of Ni(II) and Pd(II) was prepared by reacting palladium chloride and nickel chloride with ligand L. The structure of the prepared ligand and its complexes was diagnosed using severa
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7

Polat, Ayşe, Halil İlkimen, Beyza Yılmaz, Elif Yurt, and Aysel Gülbandılar. "Synthesis, characterization, and investigation of antibacterial and antifungal properties of salt and metal complexes of 2-amino-5-chloropyridine and 2,6-pyridinedicarboxylic acid." Journal of Scientific Reports-A, no. 057 (June 30, 2024): 110–20. http://dx.doi.org/10.59313/jsr-a.1469774.

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In this study, the salt (3) of 2-amino-5-chloropyridine (1) and 2,6-pyridinedicarboxylic acid (2) and the complexes of the salt (H1)x[M(2)2].nH2O, M = Fe (III), x = 1, n = 3 (4); M = Co(II), x = 2, n = 4 (5); M = Ni(II), x = 2, n = 5 (6); M = Cu(II), x = 2, n = 4 (7)} were synthesized. The structures of 3-7 were suggested by NMR, AAS, IR, UV, magnetic susceptibility and molar conductivity methods. As a result of spectroscopic analysis, it was observed that all metal complexes had an ionic and octahedral structure. All substances were susceptible to Candida albicans (yeast), Escherichia coli, B
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N. Borase, Jitendra, and Shankarsing S. Rajput. "DESIGN, SYNTHESIS AND BIOLOGICAL PROPERTIES OF TRANSITION METAL COMPLEXES OF SCHIFF BASE LIGAND DERIVED FROM PYRIDINE DERIVATIVES." Journal of Advanced Scientific Research 13, no. 10 (2022): 12–24. http://dx.doi.org/10.55218/jasr.2022131003.

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Novel classes of heterocyclic Schiff base ligand were prepared from the condensation of 2-methoxy benzaldehyde and 2-amino 4-methyl pyridine in absolute ethanol in presence of catalytic amount of dilute HCl. The resulted novel class ofheterocyclic ligand was treated with metal salt or acetate results in the formation of Fe (III), Co (III), Ni (II) &amp; Cu (II)complexes. All newly synthesized resulted ligand its metal complexes were characterized by elemental analysis and FTIR,Magnetic susceptibility, Antimicrobial, Antioxidant, ESR spectrum for Copper complex in DMF solvent recorded atroom te
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Omar, Inam, Mona M. A. Alharas, Mehran Feizi‐Dehnayebi, et al. "Design, Synthesis, Physico‐Chemical Characterization, Stability Determination, and Biomedical Applications of Some Novel Tetra‐Dentate Imine Metal Chelates Supported by Theoretical Approaches: Bridging Coordination Chemistry and Life Sciences." Applied Organometallic Chemistry 39, no. 3 (2025). https://doi.org/10.1002/aoc.70056.

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ABSTRACTThe synthesis of 4‐Bromo‐2‐({2‐[(5‐bromo‐2‐hydroxy‐benzylidene)‐amino]‐5‐nitro‐phenylimino}‐methyl)‐phenol (BSNP ligand), a straightforward, highly adjustable, and efficient BSNP ligand, was demonstrated. Four novel BSNP ligand coordinating compounds were created. The structures of these compounds were clarified by a variety of spectroscopic and analytical techniques, such as elemental analysis (CHN), spectroscopy (IR, NMR, mass spectrometry), conductivity, magnetic susceptibility, UV–Vis spectrum studies, and theoretical investigations. Additional analysis of the compounds showed that
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