通过溶液燃烧方法合成的铁纳米颗粒的X射线/玛辐射屏蔽特性
Byra R C Reddy1,2, Holaly C S Manjunatha3, Yalekadakalu S Vidya4
1Department of Physics, Presidency University, Bengaluru 560064, Karnataka, India.
Radiation protection dosimetry
|December 21, 2023
概括
这项研究合成了用于辐射屏蔽的铁 (ZnFe2O4) 纳米粒子. 该材料展示了有效的X射线和玛射线屏蔽特性,为辐射保护应用提供了低成本的解决方案.
科学领域:
- 材料科学 材料科学 材料科学
- 纳米技术纳米技术
- 辐射物理 辐射物理
背景情况:
- 纳米材料为辐射屏蔽提供了独特的特性.
- 开发功能纳米材料的成本效益高的合成方法至关重要.
研究的目的:
- 使用溶液燃烧方法合成铁 (ZnFe2O4) 纳米颗粒.
- 描述合成纳米粒子的结构,形态和光学特性.
- 为了评估ZnFe2O4纳米粒子的X射线和玛射线屏蔽能力.
主要方法:
- 使用尿素作为燃料进行溶液燃烧合成.
- 使用粉末X射线衍射 (PXRD),扫描电子显微镜 (SEM) 进行表征.
- 使用Wood和Tauc的关系来确定能量带间隙.
- 使用NaI(Tl) 探测器和多通道分析仪测量X射线和玛射线屏蔽.
主要成果:
- 立方体结构 (Fd-3m空间组) 和40nm晶体体尺寸由PXRD证实.
- SEM图像显示了聚集的不规则的表面形态.
- 直接能源频段间隙被确定为5.25 eV.
- 在0.081-1.332 MeV范围内观察到有效的X射线和玛射线屏蔽,与理论值相一致.
结论:
- 溶液燃烧方法是一种可行的低温方法,用于合成ZnFe2O4纳米粒子.
- 这些纳米粒子表现出有希望的辐射屏蔽特性.
- 合成的纳米材料为X射线和玛射线屏蔽应用提供了具有成本效益和有效的解决方案.
相关概念视频
Types of Radioactivity
16.8K
The most common types of radioactivity are α decay, β decay, γ decay, neutron emission, and electron capture.
Alpha (α) decay is the emission of an α particle from the nucleus. For example, polonium-210 undergoes α decay:
Alpha (α) decay is the emission of an α particle from the nucleus. For example, polonium-210 undergoes α decay:
16.8K
Nuclear Power
7.8K
Controlled nuclear fission reactions are used to generate electricity. Any nuclear reactor that produces power via the fission of uranium or plutonium by bombardment with neutrons has six components: nuclear fuel consisting of fissionable material, a nuclear moderator, a neutron source, control rods, reactor coolant, and a shield and containment system.
Nuclear Fuels
Nuclear fuel consists of a fissile isotope, such as uranium-235, which must be present in sufficient quantity to provide a...
Nuclear Fuels
Nuclear fuel consists of a fissile isotope, such as uranium-235, which must be present in sufficient quantity to provide a...
7.8K
Diamagnetic Shielding of Nuclei: Local Diamagnetic Current
868
An applied magnetic field causes the electrons present in the molecule to circulate, setting up a local diamagnetic current within the molecule. The local diamagnetic current arising from circulating sigma-bonding electrons induces a magnetic field, Blocal that opposes the applied magnetic field, B0. The effective magnetic field experienced by these nuclei is given by the difference between the applied and local magnetic fields in a phenomenon called local diamagnetic shielding. Essentially,...
868


