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Synthesis of Silver Nanoparticles Using Hydroxyl Functionalized Ionic Liquids and Their Antimicrobial Activity

机译:羟基官能化离子液体的银纳米粒子的合成及其抗菌活性

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We report a new one phase method for the synthesis of uniform monodisperse crystalline Ag nanoparticles in aqueous systems that has been developed by using newly synthesized mono and dihydroxylated ionic liquids and cationic surfactants based on 1,3-disubstituted imidazolium cations and halogens anions. The hydroxyl functionalized ionic liquids (HFILs) and hydroxyl functionalized cationic surfactants (HFCSs) also simultaneously acts both as the reductant and protective agent. By changing the carbon chain length, alcohol structure and anion of the 1,3-imidazolium based HFILs and HFCSs the particle size, uniform and dispersibility of nanoparticles in aqueous solvents could be controlled. Transmission electron microscopy (TEM), electron diffraction, UV-Vis and NMR, were used for characterization of HFILs, HFCSs and silver nanoparticles. TEM studies on the solution showed representative spherical silver nanoparticles with average sizes 2–8 nm, particularly 2.2 nm and 4.5 nm in size range and reasonable narrow particle size distributions (SD-standard distribution) 0.2 nm and 0.5 nm respectively. The all metal nanoparticles are single crystals with face centered cubic (fcc) structure. The silver nanoparticles surface of plasmon resonance band (λmax) around 420 nm broadened and little moved to the long wavelength region that indicating the formation of silver nanoparticles dispersion with broad absorption around infrared (IR) region. Silver complexes of these HFILs as well as different silver nanoparticles dispersions have been tested in vitro against several gram positive and gram negative bacteria and fungus. The silver nanoparticles providing environmentally friendly and high antimicrobial activity agents.
机译:我们报告了一种新的单相方法,用于在水性体系中合成均匀的单分散晶体Ag纳米颗粒,该方法已通过使用新合成的基于1,3-二取代的咪唑鎓阳离子和卤素阴离子的单和二羟基化离子液体和阳离子表面活性剂而开发。羟基官能化的离子液体(HFILs)和羟基官能化的阳离子表面活性剂(HFCSs)同时同时充当还原剂和保护剂。通过改变碳链长度,1,3-咪唑基HFIL和HFCS的醇结构和阴离子,可以控制纳米粒子在水性溶剂中的粒径,均匀性和分散性。透射电子显微镜(TEM),电子衍射,UV-Vis和NMR用于表征HFIL,HFCS和银纳米颗粒。溶液的TEM研究表明,代表性的球形银纳米颗粒的平均粒径为2-8 nm,尤其是2.2 nm和4.5 nm,合理的窄粒径分布(SD标准分布)分别为0.2 nm和0.5 nm。所有金属纳米粒子都是具有面心立方(fcc)结构的单晶。 420 nm附近的等离振子共振带(λ max )的银纳米粒子表面变宽,几乎没有移动到长波长区域,这表明形成了在红外(IR)区域附近具有宽吸收的银纳米粒子分散体。这些HFIL的银络合物以及不同的银纳米颗粒分散液已在体外针对数种革兰氏阳性和革兰氏阴性细菌和真菌进行了测试。银纳米颗粒提供了环境友好的高抗菌活性剂。

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