温度对同步辐射在人体癌细胞、组织和肿瘤中产生的氧化镉纳米粒子的影响

A. Heidari
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引用次数: 77

摘要

本文研究了烧蚀环境温度对同步辐射制备的氧化镉纳米颗粒性能的影响。为了制造纳米粒子,采用1064 (nm)波长的同步辐射脉冲发射人体癌细胞、组织和肿瘤中的镉。保持所有测试参数不变,改变人癌细胞、组织和肿瘤温度,分别在20℃和65℃下制备样品。然后通过ATR-FTIR、XRD、TEM和uv -可见光谱分析对其性能进行表征。结果表明:随着烧蚀环境温度的升高,纳米颗粒的尺寸增大;此外,在目前的实验研究中,金(Au) -氧化镉(CdO)合金被制成纳米尺寸。为此,将相同体积的金和氧化镉(CdO)溶液混合在一起,用波长为532 (nm)的同步辐射脉冲发射。采用同步辐射烧蚀工艺分别制备了金和氧化镉(CdO)溶液。采用波长1064 (nm)、脉宽7 (ns)、重复频率5 (Hz)的同步辐射脉冲制备。结果表明,波长为532 (nm)的同步辐射发射是制备纳米尺寸金化合物的合适方法。
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The effect of temperature on cadmium oxide (CdO) nanoparticles produced by synchrotron radiation in the human cancer cells, tissues and tumors
In this work, the effect of temperature of the ablation environment on the properties of Cadmium Oxide (CdO) nanoparticles produced by synchrotron radiation is investigated. To produce nanoparticles, synchrotron radiation pulse with 1064 (nm) wavelength is used to emit Cadmium in the human cancer cells, tissues and tumors. All test parameters were kept constant and human cancer cells, tissues and tumors temperature was changed to produce samples at 20°C and 65°C. Then, ATR–FTIR, XRD, TEM and UV–Visible spectroscopy analyses were performed to investigate their properties. The results show that the size of nanoparticles is increased by increase in temperature of ablation environment. In addition, in the current experimental research, Gold (Au)–Cadmium Oxide (CdO) alloy is created at the size of nano. In this regard, same volume of Gold and Cadmium Oxide (CdO) solutions were mixed together and emitted by the synchrotron radiation pulse with wavelength of 532 (nm). The Gold and Cadmium Oxide (CdO) solutions have been produced, separately, using synchrotron radiation ablation process. To produce them, synchrotron radiation pulse with wavelength of 1064 (nm) and pulse width of 7 (ns) and repeating frequency of 5 (Hz) was used. The results show that synchrotron radiation emission with wavelength of 532 (nm) is an appropriate method for producing Gold compounds in the size of nano.  
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