利用扫描电子显微镜增强铂纳米颗粒的生物化学性质

A. Alkhawaldeh
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引用次数: 0

摘要

根据掺杂材料的频率和组成计算了介电常数、介电退化和交流电电导率。在较高的频率下,观察到高的交流电导率和低的介电常数。“麦克斯韦·瓦格纳模型”可以澄清上述假设,并可能为辩证可想象的纳米材料的制造提供新的见解。通过紫外可见光降解罗达矿B的研究,考察了样品的光催化功能。光催化剂分析提供了一种方便的方法,通过各种再利用来决定你的命运。
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Enhancement of the Platinum nanoparticles of Biochemistry properties using a Scanning Electron Microscope SEM
Dielectric constants, dielectric degradation, and alternating current conductivity were calculated based on the frequency and composition of the doping material. At higher frequencies, high AC conductivity and a low dielectric constant were observed. The 'Maxwell Wagner Model' can clarify the above hypothesis and may provide new insights into the fabrication of dialectically conceivable nanomaterials. The photocatalytic function of our samples has been investigated by studying the degradation of Rhoda mine B in UV visible light. The photocatalyst analysis provides a convenient way to determine your fate through various reutilizations.
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