Evidence of a Large Refrigerant Capacity in Nb-Modified La1.4Sr1.6Mn2−xNbxO7 (0.0 ≤ x ≤ 0.15) Layered Perovskites

IF 4.7 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-03-29 DOI:10.3390/magnetochemistry10040022
Akshay Kumar, Jong Woo Kim, Mohit K. Sharma, Kavita Kumari, Ankush Vij, B. Koo
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Abstract

In this work, evidence of isothermal magnetic entropy change (∆SM) over a broad temperature region is presented in a series of La1.4Sr1.6Mn2−xNbxO7 Ruddlesden–Popper compounds with niobium modification (Nb) (0.0 ≤ x ≤ 0.15) at the manganese (Mn) site. The ceramic samples were obtained through a solid-state sintering method in optimized conditions. All compounds predominantly possessed Ruddlesden–Popper phase while a few additional reflections were resolved in Nb-doped compounds which indicates the separation of structural phases. These peaks are assigned to a separate layered perovskite and single perovskite with tetragonal symmetry and hexagonal symmetry, respectively. The microstructure of the pure sample reveals uniform grain morphology but in Nb-doped specimens chiefly three types of grains were found. It was assumed that the inter-connected large particles were of R-P phase which is dominant in both parent and x = 0.05 compounds, while the hexagonal and polygonal morphology of grains in higher concentrations of dopants directly corroborates with the symmetry of single perovskite and additional layered perovskite phases, respectively. The parent compound exhibits a single ∆SM curve, whereas all Nb-substituted samples display bifurcated ∆SM curves. This indicated two transition regions with multiple magnetic components, attributed to distinct structural phases. The highest ∆SM values obtained for components corresponding to the R-P phase are 2.32 Jkg−1k−1, 0.75 Jkg−1k−1, 0.58 Jkg−1k−1 and 0.43 Jkg−1k−1 and for the second component located around room temperature are 0.0 Jkg−1k−1, 0.2 Jkg−1k−1, 0.28 Jkg−1k−1 and 0.35 Jkg−1k−1 for x = 0.0, 0.05, 0.10 and 0.15 compositions, respectively, at 2.5 T. Due to the collective participation of both components the ∆SM was expanded through a broad temperature range upon Nb doping.
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铌改性 La1.4Sr1.6Mn2-xNbxO7(0.0 ≤ x ≤ 0.15)层状过氧化物中巨大制冷剂容量的证据
在这项研究中,一系列在锰(Mn)位点有铌(Nb)改性(0.0 ≤ x ≤ 0.15)的 La1.4Sr1.6Mn2-xNbxO7 Ruddlesden-Popper 化合物中出现了宽温度区域的等温磁熵变化(∆SM)。陶瓷样品是在优化条件下通过固态烧结法获得的。所有化合物都主要具有 Ruddlesden-Popper 相,而在掺杂 Nb 的化合物中则出现了一些额外的反射,这表明了结构相的分离。这些峰分别归属于独立的层状包晶和具有四方对称性和六方对称性的单一包晶。纯样品的微观结构显示出均匀的晶粒形态,但在掺铌样品中主要发现了三种晶粒。假定相互连接的大颗粒是 R-P 相,这在母体和 x = 0.05 复合物中都占主导地位,而掺杂剂浓度较高时晶粒的六角形和多边形形态分别与单层包晶和附加层状包晶的对称性直接吻合。母体化合物表现出单一的 ∆SM 曲线,而所有掺杂铌的样品则表现出分叉的 ∆SM 曲线。这表明两个过渡区域具有多种磁性成分,归因于不同的结构相。与 R-P 相对应的成分的最高 ∆SM 值分别为 2.32 Jkg-1k-1、0.75 Jkg-1k-1 、0.58 Jkg-1k-1 和 0.43 Jkg-1k-1,而位于室温附近的第二个成分的最高 ∆SM 值分别为 0.0 Jkg-1k-1、0.在 2.5 T 时,x = 0.0、0.05、0.10 和 0.15 成分的∆SM 分别为 0.0 Jkg-1k-1、0.2 Jkg-1k-1、0.28 Jkg-1k-1 和 0.35 Jkg-1k-1。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
期刊介绍: ACS Applied Bio Materials is an interdisciplinary journal publishing original research covering all aspects of biomaterials and biointerfaces including and beyond the traditional biosensing, biomedical and therapeutic applications. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrates knowledge in the areas of materials, engineering, physics, bioscience, and chemistry into important bio applications. The journal is specifically interested in work that addresses the relationship between structure and function and assesses the stability and degradation of materials under relevant environmental and biological conditions.
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