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分子基磁性材料是通过化学途径,将自由基或顺磁离子与抗磁性配体进行自发或可控组装,从而形成具有独特磁性的化合物。作为多学科交叉的研究前沿,分子基磁性材料在超高密度信息存储、量子计算、分子开关等先进技术中具有不可替代的应用价值。其结构设计、功能优化及实际应用转化一直是化学、物理学与材料科学等领域的研究热点。
本期文献清单分为(上)、(下)两部分,精选 Magnetochemistry 最新发表的 37 篇文章。第一部分聚焦过渡金属配合物、配位聚合物及超分子等分子的磁性研究,为相关领域科研工作者提供前沿参考与研究灵感。
1.Recent Insights into Magneto-Structural Properties of Co(II) Dicyanamide Coordination Compounds
Co(II) 双氰胺配合物的磁结构(综述)
https://www.mdpi.com/2312-7481/10/11/90
2.Relationship between Structure and Zero-Field Splitting of Octahedral Nickel(II) Complexes with a Low-Symmetric Tetradentate Ligand
低对称四齿配体配位八面体 Ni(II) 配合物的结构-零场分裂关系研究
https://www.mdpi.com/2312-7481/10/5/32
3.Manganese (III) Compounds Derived from R-Salicylaldoxime and 9-Anthracenecarboxylate Ligands: A Study of Their Synthesis and Structural, Magnetic, and Luminescent Properties
基于水杨醛肟与9-蒽甲酸配体的六种多核Mn(III)配合物的合成、晶体结构、磁性及发光性质研究
https://www.mdpi.com/2312-7481/10/8/55
4.Tetradentate NOO′O″ Schiff-Base Ligands as a Platform for the Synthesis of Heterometallic CdII-FeIII and CdII-CrIII Coordination Clusters
四齿 NOO′O″ 席夫碱配体构筑 Cd(II)-Fe(III) 与 Cd(II)-Cr(III) 异核双金属配位簇
https://www.mdpi.com/2312-7481/10/10/69
5.Slow Magnetic Relaxation in a [Co4O4] Cubane Complex with Tridentate NNO-Schiff Base Ligands
三齿NNO席夫碱配体配位的 [Co4O4] 立方簇配合物的慢磁弛豫研究
https://www.mdpi.com/2312-7481/10/11/85
6.Two New 2p–3d Metal Complexes with a Nitronyl-Nitroxide Ligand Derived from o-Vanillin: Synthesis, Crystals Structures and Magnetic Properties
两种邻香草醛衍生硝基氮氧自由基配体配位的 2p–3d 金属配合物的合成、晶体结构与磁性研究
https://www.mdpi.com/2312-7481/10/11/86
7.A Trinuclear Co(II) Complex Based on the Tris-Dioxolene Triphenylene Non-Innocent Bridge: Complementary Redox, Magnetic Behavior and Theoretical Calculations
基于六羟基三苯非无辜桥联配体的三核 Co(II) 配合物的互补氧化还原及磁性研究
https://www.mdpi.com/2312-7481/10/12/102
8.Magnetic Anisotropy and Slow Magnetic Relaxation in Two Mononuclear Octahedral Cobalt(II) Complexes
两种八面体单核 Co(II) 配合物的磁各向异性及慢磁弛豫研究
https://www.mdpi.com/2312-7481/11/2/11
9.Cobalt(II) and Nickel(II) Cubane {M4O4} Complexes Derived from Di-2-pyridyl Ketone and Benzoate: Syntheses, Structure and Magnetic Properties
基于2-二吡啶基酮与苯甲酸的 {Co4O4} 与 {Ni4O4} 立方簇配合物的合成、晶体结构与磁性研究
https://www.mdpi.com/2312-7481/11/4/34
10.ESR and Mössbauer Spectroscopy of Iron(III) Spin Crossover Complexes Based on Pentadentate Schiff Base Ligands with Pseudohalide Coligands
基于五齿席夫碱配体及拟卤素辅助配体的 Iron(III) 自旋交叉配合物的电子自旋共振与穆斯堡尔谱研究
https://www.mdpi.com/2312-7481/11/5/43
11.A Heptacobalt(II/III) Dicubane Cluster with Polyoxometalate and Acetato Ligands: Synthesis, Crystal Structure, and Magnetic Properties
七核 Co(II/III) 双立方簇多金属氧酸盐的合成、结构与磁性研究
https://www.mdpi.com/2312-7481/11/6/48
12.Controlled Zn(II) to Co(II) Transmetalation in a Metal–Organic Framework Inducing Single-Ion Magnet Behavior
通过可控 Co(II) 取代 Zn(II) 构筑新型MOF单离子磁体
https://www.mdpi.com/2312-7481/10/12/99
13.Uncovering the Mechanisms of Long-Range Magnetic Order in [Mn(mal)(H2O)]n: Insights from Microscopic and Macroscopic Magnetic Analysis
[Mn(mal)(H2O)]ₙ 的长程磁有序机制的微观与宏观磁性分析研究
https://www.mdpi.com/2312-7481/10/12/109
14.Chemical and Structural Versatility in the Copper/2,2′-Bipyrimidine/Iodide System: A Regular Alternating Mixed-Valent Cu(II)-Cu(I) Chain Showing Unusually Similar Metal Coordination Environments
铜(2,2′-联嘧啶)碘体系中混合价 Cu(II)-Cu(I) 链及金属配位环境的异常相似性研究
https://www.mdpi.com/2312-7481/11/3/20
15.Copper(II)-Promoted Reactions of α-Pyridoin Oxime: A Dodecanuclear Cluster and a 2D Coordination Polymer
Cu(II) 促进的α-吡啶肟转化合成十二核团簇分子与二维配位聚合物
https://www.mdpi.com/2312-7481/11/4/35
16.Building Up a Hexacopper(II)-Pyrazolate/Oxamate Magnetic Complex with Rare Ethane-1,2-Dioxide (–OCH2CH2O–) as a Bridge Between Copper(II) Units
基于Pyrazolate/Oxamate配体和乙二醇氧桥构筑的六核 Cu(II) 磁性超分子
https://www.mdpi.com/2312-7481/10/12/94
17.Electronic Influence of Trifluoromethyl Substituents on Benzoate Ligands in Paddlewheel-Type Diruthenium(II,II) Naphthyridine Complexes
三氟甲基苯甲酸配体对双核 Ru(II,II)-萘啶配合物电子结构的调控研究
https://www.mdpi.com/2312-7481/11/12/104
Magnetochemistry 期刊介绍
主编:Carlos J. Gómez García, Universidad de Valencia, Spain
期刊发表磁性结构的理论与应用研究,主要文章类型包括原创研究论文、综述等。期刊涵盖了多个研究方向,主题包括磁性材料、分子磁体、纳米磁性材料、自旋电子学以及磁共振。此外,期刊还收录关于磁性材料应用的研究文章,涵盖多个前沿领域,包括生物医学、信息存储与处理、能源与环境、智能材料与器件以及传感技术等。
2024 Impact Factor:2.5
2024 CiteScore:4.6
Time to First Decision:18.9 Days
Acceptance to Publication:3.5 Days
期刊主页:https://www.mdpi.com/journal/magnetochemistry

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