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SYSTEMATIC STUDY OF STRUCTURAL AND CONDUCTIVE PROPERTIES OF COPPER NANOTUBES MODIFIED BY IONIZING RADIATION

机译:电离辐射修饰的铜纳米管的结构和导电性能的系统研究

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摘要

In the modern materials science, irradiation by electron beams and by a γ-ray flux of metallic nanostructures is an effective tool for stimulating controlled modification of the structural and conductive properties of materials. The paper presents the results of investigation of the influence of various types of irradiation on the structural and conductive properties of copper nanotubes obtained by electrochemical synthesis in pores of template matrices based on polyethylene terephthalate. The SEM, XRD, and EDS methods established that irradiation by an electron beam and γ rays with doses of 50 and 100 kGy allows modifying the crystal structure of nanotubes, increasing their conductivity, and decreasing their resistance without destroying their structure. An increase in the irradiation dose leads either to an insignificant change in the conductive properties for high-energy electrons and γ quanta, or to a deterioration of the conductive properties due to the appearance of oxide compounds in the crystal structure and to subsequent destruction of samples.
机译:在现代材料科学中,电子束和金属纳米结构的γ射线通量的照射是刺激材料的结构和导电特性的受控改性的有效工具。本文介绍了研究的各种结果对基于聚对苯二甲酸乙二醇酯的模板基质孔中电化学合成得到的铜纳米管的结构和导电性能的影响的结果。 SEM,XRD和EDS方法确定了以50 kGy和100 kGy剂量的电子束和γ射线辐照可以修饰纳米管的晶体结构,增加其导电性并降低其电阻而不破坏其结构。辐照剂量的增加或者导致高能电子和γ量子的导电特性发生不明显的变化,或者由于晶体结构中氧化物化合物的出现以及随后样品的破坏而导致导电特性的下降。 。

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