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Its mass spectrum showed a molecular ion peak at m/z 408 (M+) and the 1H NMR spectrum of such compound indicated the presence of singlet signals at δ 8.52 and 8.76 ppm assigned to the =CH of triazine and triazole rings.
HPLC results of luteolin content in various extracts using luteolin as the marker compound indicated the ethanol extract to contain the highest concentration of luteolin (0.372% w/w).
The signals at 4.11 and 4.34 (as separate doublets, due to the chiral nature of the compound) indicated the two hydrogens attached to the carbon atom of the glycine linked with SN38.
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The shift in the mass spectrum between the unlabeled compound and the labeled compound indicates the number of atoms in the compounds.
The transport parameters of nitrogen compounds indicated the vertical migration of petroleum in the Tazhong-4 reservoirs.
The structural diversity of the compounds indicated the Ag⋯Ag argentophilicity, the coordination modes of carboxyl groups and the difference pyrazine derivatives play an important role in the formation of such coordination architectures.
Further, the results of QSAR studies of these synthesized compounds indicated the importance of weakly polar component of surface area, hydrophobicity and ionization potential parameters in defining their antimicrobial activity.
The LC-MS analysis coupled with putative identification of compounds indicated the presence of phenolic and flavanoids such as DL-3,4-dihydroxyphenyl glycol, catechin, amiloxate (cinnamic acid derivative); 4-methyldaphnetin (coumarin), terpenoid such as punctaporin B and podocarpatriene derivative.
These compounds indicate the redox status of the system and represent potential energy sources.
Low-temperature EPR studies of electrolyte solutions of all zinc compounds indicate the presence of a phenoxyl radical with a g-value in the range 2.070 2.099, which is illustrative for an electron delocalization over the metal centre.
Structural investigations by X-ray powder diffraction, applied to the LiMnO compounds, indicate the formation of a second crystalline phase, Li2MnO3 (space group C2/m), with the increasing lithium content.
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CEO of Professional Science Editing for Scientists @ prosciediting.com