Partial Substitution of Copper with Nickel for the Superconducting Bismuth Compound and Its Effect on the Physical and Electrical Properties

IF 0.3 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Korean Journal of Materials Research Pub Date : 2023-09-27 DOI:10.3740/mrsk.2023.33.9.360
Kareem Ali Jasim, Riyam Abd Al-Zahra Fadil, Kassim Mahdi Wadi, Auday Hattem Shaban
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Abstract

This study focuses on how the partial substitution of copper by nickel nanoparticles affects the electrical and structural properties of the Bi2Ba2Ca2Cu2.9Ni0.1O10+δ, Bi2Ba2Ca2Cu2.8Ni0.2O10+δ and Bi2Ba2Ca2Cu2.6Ni0.4O10+δ compounds. Approximate values of crystallization size and crystallization percentage for the three compounds were calculated using the Scherer, modified Scherer, and Williamson-Hall methods. A great similarity was observed in the crystal size values from the Scherer method, 243.442 nm, and the Williamson-Hall method, 243.794 nm for the second sample. At the same time this sample exhibited the highest crystal size value for the three methods. In the examination of electrical properties, the sample with 0.1 partial substitution, Bi2Ba2Ca2Cu2.9Ni0.1O10+δ was determined to be the best with a critical temperature of 100 K and an energy gap of 6.57639 × 10-21 MeV. Using the SEM technique to analyze the structural morphology of the three phases, it was discovered that the size of the granular forms exceeds 25 nm. It was determined that the samples’ shapes alter when nickel concentration rises. The patterns that reveal the distribution of the crystal structure also exhibit clear homogeneity.
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用镍部分取代铜制备超导铋化合物及其对其物理电学性能的影响
研究了纳米镍部分取代铜对Bi2Ba2Ca2Cu2.9Ni0.1O10+δ、Bi2Ba2Ca2Cu2.8Ni0.2O10+δ和Bi2Ba2Ca2Cu2.6Ni0.4O10+δ化合物电学和结构性能的影响。采用Scherer法、改进Scherer法和Williamson-Hall法计算了三种化合物的结晶尺寸和结晶百分比的近似值。第二个样品的Scherer法和Williamson-Hall法的晶体尺寸值非常相似,分别为243.442 nm和243.794 nm。同时,该样品在三种方法中显示出最高的晶体尺寸值。电学性能测试中,0.1部分取代Bi2Ba2Ca2Cu2.9Ni0.1O10+δ的样品性能最好,临界温度为100 K,能隙为6.57639 × 10-21 MeV。利用扫描电镜技术分析了三种相的结构形态,发现颗粒形态的尺寸超过25 nm。当镍浓度升高时,样品的形状发生改变。显示晶体结构分布的图案也表现出明显的均匀性。
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来源期刊
Korean Journal of Materials Research
Korean Journal of Materials Research MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
0.50
自引率
33.30%
发文量
66
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