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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Quantitative measurement of Au and Fe in ferromagnetic nanoparticles with Laser Induced Breakdown Spectroscopy using a polymer-based gel matrix
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Quantitative measurement of Au and Fe in ferromagnetic nanoparticles with Laser Induced Breakdown Spectroscopy using a polymer-based gel matrix

机译:聚合物基凝胶基质的激光诱导击穿光谱法定量测定铁磁纳米粒子中的金和铁

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摘要

The medical applications of nanomaterials require substantial changes in the research and development stage, such as the introduction of new processes and methods, and adequate modifications of the national and international laws on the medical product registration. To accomplish this, proper parameterizations of nano-scaled products need to be developed and implemented, accompanied by suitable measuring methods. The introduction of metallic particles to medical practices requires the precise, quantitative evaluation of the production process and later quantification and characterization of the nanoparticles in biological matrices for the bioavailability and biodistribution evaluation. In order to address these issues we propose a method for the quantitative analysis of the metallic nanoparticles composition by Laser Induced Breakdown Spectroscopy (LIBS). Au/Fe ferro-magnetic nanoparticles were used to evaluate the method applicability. Since the powder form of nanoparticles spatters upon laser ablation, first we had to develop fast, convenient and quantitative method for the nano-powdered sample preparation. The proposed method is based on the polymer gelation of nanopowders or their water suspensions. It has been shown that nanopowders compositional changes throughout the production process, along with their final characterization, can be reliable performed with LIBS technique. The quantitative values obtained were successfully correlated with those derived with ICP technique.
机译:纳米材料的医学应用需要在研发阶段进行重大改变,例如引入新的工艺和方法,以及对医疗产品注册的国家和国际法律进行适当的修改。为此,需要开发和实施适当的纳米级产品参数化方法,以及适当的测量方法。将金属颗粒引入医疗实践需要对生产过程进行精确的定量评估,并随后对生物基质中的纳米颗粒进行定量和表征,以进行生物利用度和生物分布评估。为了解决这些问题,我们提出了一种通过激光诱导击穿光谱法(LIBS)对金属纳米颗粒成分进行定量分析的方法。使用Au / Fe铁磁性纳米颗粒评估该方法的适用性。由于纳米粒子的粉末形式会在激光烧蚀后飞溅,因此我们首先必须开发出一种快速,方便且定量的方法来制备纳米粉末样品。所提出的方法基于纳米粉末或其水悬浮液的聚合物凝胶化。已经表明,使用LIBS技术可以可靠地完成整个生产过程中纳米粉的成分变化及其最终表征。获得的定量值已成功地与ICP技术得出的定量值相关联。

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