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超顺磁性30%钴镍/氧化镍纳米复合材料中的近藤效应:详细的输运和磁性研究

The Kondo effect in superparamagnetic 30% Co-Ni/NiO nanocomposites: detailed transport and magnetic investigations.

作者信息

Kamble Shilpa D, Kamble Charudipa D, Gawai Umesh P, Kumar Devendra, Chavan Padmakar G, Gurav Sanjay K

机构信息

Department of Physics, Shri Madhavrao Patil Mahavidyalaya Murum, Tq. Omerga Osmanabad-413606 M.S. India

Department of Physics, DDSP, Arts Commerce and Science College Erandol, Dist Jalgaon-425109 M.S. India

出版信息

RSC Adv. 2024 Nov 18;14(49):36667-36674. doi: 10.1039/d4ra06638c. eCollection 2024 Nov 11.

Abstract

Nanocomposites of 20% and 30% Co-doped Ni/NiO were synthesized using a microwave-assisted sol-gel auto-combustion method. The 30% Co-doped Ni/NiO nanocomposite exhibited negative magnetoresistance (M-R) at various temperatures, including 2 K, 10 K, 80 K, 100 K, and 250 K. This behavior is interpreted as indicative of a Kondo-like scattering effect. The resistivity () upturn observed at low temperatures in the 30% Co-doped Ni/NiO nanocomposite can be accurately described by a power series equation combined with a Kondo term. Furthermore, this sample demonstrated a metal-insulator transition around the Kondo temperature ≈ 29.8(5) K, with noticeable resistivity changes at magnetic fields of 0 T, 1 T, 5 T, and 8 T. Additionally, a hump in resistivity at approximately 212 K, 170 K, 243 K, 251 K, and 209 K for magnetic fields of 0 T, 0.05 T, 1 T, 5 T, and 8 T, respectively, is attributed to the charge ordering of Co and Co ions within the Ni/NiO lattice, contributing to a further metal-insulator transition.

摘要

采用微波辅助溶胶 - 凝胶自燃烧法合成了20%和30%钴掺杂的Ni/NiO纳米复合材料。30%钴掺杂的Ni/NiO纳米复合材料在包括2 K、10 K、80 K、100 K和250 K在内的不同温度下表现出负磁阻(M - R)。这种行为被解释为表明存在类似近藤散射效应。30%钴掺杂的Ni/NiO纳米复合材料在低温下观察到的电阻率()上升可以通过结合近藤项的幂级数方程准确描述。此外,该样品在近藤温度≈29.8(5) K附近表现出金属 - 绝缘体转变,在0 T、1 T、5 T和8 T的磁场下有明显的电阻率变化。另外,对于0 T、0.05 T、1 T、5 T和8 T的磁场,在大约212 K、170 K、243 K、251 K和209 K处电阻率出现的驼峰分别归因于Ni/NiO晶格内Co和Co离子的电荷有序化,这促成了进一步的金属 - 绝缘体转变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12dc/11571057/844798a08809/d4ra06638c-f1.jpg

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