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Synthesis of dual functional pyrimidinium ionic liquids as reaction media and antimicrobial agents

机译:作为反应介质和抗微生物剂的双官能嘧啶离子液体的合成

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The development of materials with intrinsic synergistic properties has attracted great interest in the fields of chemistry and materials science. This article describes the design of and a concise two-step synthetic route to twenty N -alkyl pyrimidinium ionic liquids with the ability to be used as reaction media and antibacterial agents. These synergistic materials have been synthesized by the N -alkylation of pyrimidine, a precursor of nucleobases, with varied n -alkyl (C _(1) –C _(10) ) halides followed by anion metathesis of the resulting pyrimidinium halides using the salt of the counter anions, tetrafluoroborate (BF _(4) ~(?) ) and bis(trifluoromethanesulfonyl)amide (NTf _(2) ~(?) ) in good to excellent yields. With these newly synthesized quaternized pyrimidinium ionic liquids (PyrILs), the studies of solubility/miscibility in common solvents, solute–solvent interactions using UV-visible spectroscopy, compatibility as a designed solvent for chemical reactions and evaluation of antimicrobial properties were conducted. The assessment of biological properties of all the PyrILs with BF _(4) ~(?) counteranion against several microorganisms revealed that the [C _(9) Pyr]BF _(4) and [C _(10) Pyr]BF _(4) containing longer alkyl chains are potential antibacterial agents showing excellent bioactivity against both Gram-positive S. aureus (MIC = 8 and 4 μg mL ~(?1) , respectively), and Gram-negative E. coli bacteria (MIC = 8 and 4 μg mL ~(?1) , respectively).
机译:具有内在协同性质的材料的发展引起了对化学和材料科学领域的兴趣。本文介绍了与二十甲烷基嘧啶鎓离子液体的简明两步合成途径的设计,具有用作反应介质和抗菌剂的能力。通过嘧啶的N-烷基化,核碱基的前体(C _(1)-C _(10))卤化物,然后使用盐的阴离子复分解而合成了这些协同材料。使用盐的所得嘧啶鎓卤化物的阴离子复位在抗衡阴离子,四氟硼酸盐(BF _(4)〜(α))和双(三氟甲磺酰基)酰胺(NTF _(2)〜(α))良好至优异的产率。通过这些新合成的季铵化嘧啶离子液体(Pyrils),使用UV可见光谱的溶解度/混溶性的研究,使用UV可见光谱进行溶质 - 溶剂相互作用,作为用于化学反应的设计溶剂和抗微生物性质的评估。对若干微生物的BF _(4)〜(α)抗衡性的所有丙里酸的生物学性质评估显示[C _(9)Pyr] BF _(4)和[C _(10)Pyr] BF _ (4)含有较长的烷基链是潜在的抗菌剂,其显示出对革兰氏阳性的金黄色葡萄球菌(MIC = 8和4μgmL〜(α1)的优异生物活性,以及​​革兰氏阴性大肠杆菌细菌(MIC =分别为8和4μgml〜(α1)。

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