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A study of the growth curves of C. xerosis and E. coli Bacteria in Mediums Containing Cobalt Ferrite Nanoparticles

机译:含钴铁氧体纳米粒子的培养基中干枯病和大肠杆菌的生长曲线研究

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Previous publications demonstrated the sensibility of the bacteria, when these were reproduced in mediums that contain nanoparticles of luminescent silicon. The mentioned effect takes place in the development of a bacteriological sensor. The present investigation is centered on the study of the growth curves of E. coli and C. xerosis, but now in the presence of nanosize particles of Cobalt Ferrite (CoFe_2O_4) which were produced by the co-precipitation method in a watery phase. These nanoparticles present ferromagnetism characteristics (coercivity at room temperature among 600-5000 Oe for a size around 15-40nm). The experiment results evidence that the adaptation period of the bacteria, in contact with a stable suspension of nanoparticles of Ferrite, shows a growth curve of above the one obtained in absence of the nanoparticles (standard curve). The probable interaction of the electric polarity that these possess should be involved with the observed phenomena.
机译:以前的出版物证明了当细菌在含有发光硅纳米颗粒的培养基中繁殖时的敏感性。提到的效果发生在细菌传感器的开发中。目前的研究集中在研究大肠杆菌和干枯病的生长曲线上,但是现在存在着纳米颗粒的钴铁氧体(CoFe_2O_4),该颗粒是通过共沉淀法在水相中产生的。这些纳米粒子具有铁磁特性(室温下矫顽力在600-5000 Oe之间,尺寸约为15-40nm)。实验结果证明,与铁素体纳米颗粒的稳定悬浮液接触的细菌的适应期显示出高于不存在纳米颗粒时的生长曲线(标准曲线)。这些所具有的极性可能的相互作用应与观察到的现象有关。

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