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Title mechanochemical preparation, solid-state characterization, and antimicrobial performance of copper and silver nitrate coordination polymers with l- and dl-arginine and histidine
Journal journal of essential oil bearing plants
Year 2025
DOI https://doi.org/10.3390/ijms24065180
Cited By 9
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Abstract
the antimicrobial activity of the novel coordination polymers obtained by co-crystallizing the amino acids arginine or histidine, as both enantiopure l and racemic dl forms, with the salts cu(no3)2 and agno3 has been investigated to explore the effect of chirality in the cases of enantiopure and racemic forms. the compounds [cu.aa.(no3)2]cps and [ag.aa.no3]cps (aa = l-arg, dl-arg, l-his, dl-his) were prepared by mechanochemical, slurry, and solution methods and characterized by x-ray single-crystal and powder diffraction in the cases of the copper coordination polymers, and by powder diffraction and by solid-state nmr spectroscopy in the cases of the silver compounds. the two pairs of coordination polymers, [cu.l-arg.(no3)2.h2o]cp and [cu.dl-arg.(no3)2.h2o]cp, and [cu.l-hys.(no3)2.h2o]cp and [cu.dl-his.(no3)2.h2o]cp, have been shown to be isostructural in spite of the different chirality of the amino acid ligands. a similar structural analogy could be established for the silver complexes on the basis of ssnmr. the activity against the bacterial pathogens pseudomonas aeruginosa, escherichia coli, and staphylococcus aureus was assessed by carrying out disk diffusion assays on lysogeny agar media showing that, while there is no significant effect arising from the use of enantiopure or chiral amino acids, the coordination polymers exert an appreciable antimicrobial activity comparable, when not superior, to that of the metal salts alone.
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Plants
21
Compounds
21
Records

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Compounds
Plants
Plant Parts
All Records
CompoundCount
linalool1
sclareol1
globulol1
caryophyllene oxide1
germacrene d1
caryophyllene1
geranyl acetate1
neryl acetate1
linalyl acetate1
gamma-terpineol1
alpha-terpineol1
alpha-pinene1
trans-linalool oxide (furanoid)1
cis-linalool oxide (furanoid)1
(e)-beta-ocimene1
(z)-beta-ocimene1
d-limonene1
para-cymene1
alpha-phellandrene1
beta-myrcene1
beta-pinene1
PlantFamily
Salvia sclarealamiaceae
Plant PartCount
leaves and flower21
PlantCompoundPart%
Salvia sclarea (e)-beta-ocimene leaves and flower 0.68
Salvia sclarea (z)-beta-ocimene leaves and flower 0.27
Salvia sclarea alpha-phellandrene leaves and flower 0.03
Salvia sclarea alpha-pinene leaves and flower 0.51
Salvia sclarea alpha-terpineol leaves and flower 4.29
Salvia sclarea beta-myrcene leaves and flower 0.47
Salvia sclarea beta-pinene leaves and flower 0.26
Salvia sclarea caryophyllene leaves and flower 3.7
Salvia sclarea caryophyllene oxide leaves and flower 0.61
Salvia sclarea cis-linalool oxide (furanoid) leaves and flower 0.11
Salvia sclarea d-limonene leaves and flower 0.69
Salvia sclarea gamma-terpineol leaves and flower 0.3
Salvia sclarea geranyl acetate leaves and flower 3.42
Salvia sclarea germacrene d leaves and flower 1.84
Salvia sclarea globulol leaves and flower 0.39
Salvia sclarea linalool leaves and flower 23.12
Salvia sclarea linalyl acetate leaves and flower 55.21
Salvia sclarea neryl acetate leaves and flower 1.88
Salvia sclarea para-cymene leaves and flower 0.1
Salvia sclarea sclareol leaves and flower 1.76
Salvia sclarea trans-linalool oxide (furanoid) leaves and flower 0.18