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首页> 外文期刊>Journal of Molecular Liquids >'Organic counterion' modified quaternary ammonium salt: Impact on antibacterial activity & application properties
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'Organic counterion' modified quaternary ammonium salt: Impact on antibacterial activity & application properties

机译:“有机反逆”改性季铵盐:对抗菌活性和应用性质的影响

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Quaternary ammonium salts (QAS) with organic counterion (QAS-OC) impact on surface tension, micelle aggregation, antibacterial activity and three application properties were investigated by surface tension, steady-state fluorescence, bacteriostatic assay, foaming property, contact angle and emulsifying performance measurements. Besides the alkyl-chain-length of its cationic part on antibacterial activity was also investigated. It is demonstrates that micellization and surface adsorption first decreasing and then increasing as the alkyl-chain-length of organic counterion exceed 2, i.e. C16NC2 (cetyltrimethylammonium acetate). The number of aggregates (N-agg) also follow this law as the change of counterion at a same concentration of 5 mM. Antibacterial test reveals that the increasing counterion length moderately impairs antibacterial activity, and there is a slight influence for the dealing time of antibacterial agent on antibacterial activity. The minimum concentration of C16NCX for bacterial rate of 99.9% is 40 mg/L. It shows the antimicrobial activity for different bacteria strain follow this order: Staphylococcus aureus (S. A.) = Monilia albican (M. A.) > Escherichia coli (E. coli) > Bacillus subtilis (B. S.) > Pseudomonas aeruginosa (P. A.). Bactericidal activity result indicates a fine sterilizing rate of 99% can be obtained at concentration of 40 mg/L. On the other hand, the alkyl chain length of cationic part has significant impact on antibacterial activity, and only when single alkyl-chain-length beyond C-12 dose the QAS has an effective antibacterial rate (>50%). The application property of foam height and its stability only build up as the alkyl-chain-length of counterion beyond 6 (C16NC6). Both the wetting ability and emulsion stability have a similar variation law as the former. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过表面张力,稳态荧光,抑菌测定,发泡性能,接触角和乳化性能,对表面张力,胶束聚集,抗菌活性和三种施用性能进行有机抗衡静脉(QAS-OC)的影响测量。除了其阳离子部分对抗菌活性的烷基链长度之外。结果表明,胶束化和表面吸附首先减少,然后随着有机抗衡离子的烷基链长度的增加而增加,即C16NC2(乙酸十六烷基铵)。聚集体(N-AGG)的数量也遵循该法作为抗衡离子的变化,以相同的浓度为5毫米。抗菌试验表明,增加的抗衡离子长度适度造成抗菌活性,并且对抗菌剂对抗菌活性的交易时间有轻微影响。对于细菌率为99.9%的C16NCX的最小浓度为40mg / L.它显示不同细菌菌株的抗菌活性遵循以下顺序:金黄色葡萄球菌(S.)= Monilia albican(M.A.)>大肠杆菌(大肠杆菌)>芽孢杆菌(B. S.)>假单胞菌铜绿假单胞菌(P.A.)。杀菌活性结果表明,在40mg / L的浓度下可以获得99%的细灭菌速率。另一方面,阳离子部分的烷基链长度对抗菌活性产生显着的影响,并且仅当单一烷基链长度超过C-12剂量时,QAS具有有效的抗菌速率(> 50%)。泡沫高度及其稳定性的施用性能仅作为超过6(C16NC6)的烷基链长度的烷基链长度。润湿能力和乳液稳定性都具有与前者相似的变异律。 (c)2017年Elsevier B.V.保留所有权利。

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