Sportelli Maria Chiara, Volpe Annalisa, Picca Rosaria Anna, Trapani Adriana, Palazzo Claudio, Ancona Antonio, Lugarà Pietro Mario, Trapani Giuseppe, Cioffi Nicola
IFN-CNR, Physics Department "M. Merlin", Bari 70126, Italy.
Chemistry Department, Università degli Studi di Bari "Aldo Moro", Bari 70126, Italy.
Nanomaterials (Basel). 2016 Dec 30;7(1):6. doi: 10.3390/nano7010006.
Copper-chitosan (Cu-CS) nanoantimicrobials are a novel class of bioactive agents, providing enhanced and synergistic efficiency in the prevention of biocontamination in several application fields, from food packaging to biomedical. Femtosecond laser pulses were here exploited to disrupt a Cu solid target immersed into aqueous acidic solutions containing different CS concentrations. After preparation, Cu-CS colloids were obtained by tuning both Cu/CS molar ratios and laser operating conditions. As prepared Cu-CS colloids were characterized by Fourier transform infrared spectroscopy (FTIR), to study copper complexation with the biopolymer. X-ray photoelectron spectroscopy (XPS) was used to elucidate the nanomaterials' surface chemical composition and chemical speciation of the most representative elements. Transmission electron microscopy was used to characterize nanocolloids morphology. For all samples, ξ-potential measurements showed highly positive potentials, which could be correlated with the XPS information. The spectroscopic and morphological characterization herein presented outlines the characteristics of a technologically-relevant nanomaterial and provides evidence about the optimal synthesis parameters to produce almost monodisperse and properly-capped Cu nanophases, which combine in the same core-shell structure two renowned antibacterial agents.
铜-壳聚糖(Cu-CS)纳米抗菌剂是一类新型生物活性剂,在从食品包装到生物医学等多个应用领域预防生物污染方面具有增强的协同效率。本文利用飞秒激光脉冲轰击浸入含有不同浓度壳聚糖的酸性水溶液中的铜固体靶材。制备后,通过调整铜/壳聚糖摩尔比和激光操作条件获得了Cu-CS胶体。对制备好的Cu-CS胶体进行傅里叶变换红外光谱(FTIR)表征,以研究铜与生物聚合物的络合情况。利用X射线光电子能谱(XPS)阐明纳米材料的表面化学成分和最具代表性元素的化学形态。透射电子显微镜用于表征纳米胶体的形态。对于所有样品,ζ电位测量显示出高度正电位,这与XPS信息相关。本文所呈现的光谱和形态表征概述了一种具有技术相关性的纳米材料的特性,并提供了关于制备几乎单分散且包覆良好的铜纳米相的最佳合成参数的证据,这些铜纳米相在同一核壳结构中结合了两种著名的抗菌剂。