Field-induced single-ion magnet behavior in a hydrogen-bonded supramolecular cobalt(II) complex
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Z. Tian | Dong Shao | Xiaodong Yang | Shi She | L. Shen
[1] P. Sahu,et al. A trapped hexaaqua CoII complex between the polyanionic sheets of decavanadate reveals high axial anisotropy and field induced SIM behaviour. , 2021, Dalton transactions.
[2] Willian X. C. Oliveira,et al. Field-Induced Slow Magnetic Relaxation of a Six-Coordinate Mononuclear Manganese(II) and Cobalt(II) Oxamate Complexes. , 2020, Inorganic chemistry.
[3] Yi‐en Du,et al. Field-induced slow magnetic relaxation in two interpenetrated cobalt(ii) metal–organic framework isomers , 2020 .
[4] Zhangjing Zhang,et al. Hydrogen-Bonded Organic Frameworks as A Tunable Platform for Functional Materials. , 2020, Journal of the American Chemical Society.
[5] Fupei Liang,et al. Metal hydrogen-bonded organic frameworks: structure and performance. , 2020, Dalton transactions.
[6] Xin-Yi Wang,et al. Development of Single‐Molecule Magnets † , 2020 .
[7] Dong Shao,et al. Tuning magnetic anisotropy in a class of Co(II) bis(hexafluoroacetylacetonate) complexes. , 2020, Chemistry, an Asian journal.
[8] E. Coronado. Molecular magnetism: from chemical design to spin control in molecules, materials and devices , 2019, Nature Reviews Materials.
[9] Ying-Ying Zhang,et al. Field-induced slow magnetic relaxation in two-dimensional and three-dimensional Co(ii) coordination polymers. , 2019, Dalton transactions.
[10] Fupei Liang,et al. A series of dysprosium-based hydrogen-bonded organic frameworks (Dy–HOFs): thermally triggered off → on conversion of a single-ion magnet , 2019, Inorganic Chemistry Frontiers.
[11] N. Chilton,et al. Uncertainty estimates for magnetic relaxation times and magnetic relaxation parameters. , 2019, Physical chemistry chemical physics : PCCP.
[12] Xin-Yi Wang,et al. Spin crossover in hydrogen-bonded frameworks of FeII complexes with organodisulfonate anions. , 2019, Dalton transactions.
[13] Xin-Yi Wang,et al. Syntheses, structures, and magnetic properties of three two-dimensional cobalt(ii) single-ion magnets with a CoIIN4X2 octahedral geometry , 2019, CrystEngComm.
[14] Wei Zhou,et al. Multifunctional porous hydrogen-bonded organic framework materials. , 2019, Chemical Society reviews.
[15] P. Stang,et al. Hierarchical Assemblies of Supramolecular Coordination Complexes. , 2018, Accounts of chemical research.
[16] Takayoshi Suzuki,et al. Field-induced single-molecule magnet behavior in ideal trigonal antiprismatic cobalt(ii) complexes: precise geometrical control by a hydrogen-bonded rigid metalloligand. , 2018, Chemical communications.
[17] Xin-Yi Wang,et al. Two Interpenetrated Cobalt(II) Metal–Organic Frameworks with Guest-Dependent Structures and Field-Induced Single-Ion Magnet Behaviors , 2018, Crystal Growth & Design.
[18] Meng Sun,et al. Solvent-Dependent Assembly of Two New 3d–4f Heterometal-Organic Frameworks Based on a Bifunctional Ligand , 2018, Journal of Cluster Science.
[19] Xin-Yi Wang,et al. Field-Induced Single-Ion Magnet Behaviour in Two New Cobalt(II) Coordination Polymers with 2,4,6-Tris(4-pyridyl)-1,3,5-triazine , 2017 .
[20] Yan Zhou,et al. Two-dimensional frameworks formed by pentagonal bipyramidal cobalt(ii) ions and hexacyanometallates: antiferromagnetic ordering, metamagnetism and slow magnetic relaxation. , 2017, Dalton transactions.
[21] E. Ruiz,et al. Single-molecule magnetism arising from cobalt(II) nodes of a crystalline sponge , 2017 .
[22] Song Gao,et al. Understanding the Magnetic Anisotropy toward Single-Ion Magnets. , 2016, Accounts of chemical research.
[23] Xin-Yi Wang,et al. Probing the Effect of Axial Ligands on Easy-Plane Anisotropy of Pentagonal-Bipyramidal Cobalt(II) Single-Ion Magnets. , 2016, Inorganic chemistry.
[24] S. Aldoshin,et al. Single-Ion Magnet Et4N[CoII(hfac)3] with Nonuniaxial Anisotropy: Synthesis, Experimental Characterization, and Theoretical Modeling. , 2016, Inorganic chemistry.
[25] Xin-Yi Wang,et al. Syntheses, structures, and magnetic properties of three new chain compounds based on a pentagonal bipyramidal Co(II) building block , 2016 .
[26] Yu-Ling Wang,et al. 3D chiral and 2D achiral cobalt(ii) compounds constructed from a 4-(benzimidazole-1-yl)benzoic ligand exhibiting field-induced single-ion-magnet-type slow magnetic relaxation. , 2016, Dalton transactions.
[27] A. Powell,et al. Constraining the coordination geometries of lanthanide centers and magnetic building blocks in frameworks: a new strategy for molecular nanomagnets. , 2016, Chemical Society reviews.
[28] Shaoming Fang,et al. Two isomeric Zn(II)-based metal–organic frameworks constructed from a bifunctional triazolate–carboxylate tecton exhibiting distinct gas sorption behaviors , 2016 .
[29] F. Neese,et al. A four-coordinate cobalt(II) single-ion magnet with coercivity and a very high energy barrier , 2016, Nature Communications.
[30] J. Sutter,et al. Magnetic anisotropy in two- to eight-coordinated transition–metal complexes: Recent developments in molecular magnetism , 2016 .
[31] P. Cheng,et al. Microporous Metal-Organic Framework Based on a Bifunctional Linker for Selective Sorption of CO2 over N2 and CH4. , 2015, Inorganic chemistry.
[32] M. Murrie,et al. 3d single-ion magnets. , 2015, Chemical Society reviews.
[33] Song Gao,et al. Cobalt(II) coordination polymer exhibiting single-ion-magnet-type field-induced slow relaxation behavior. , 2015, Inorganic chemistry.
[34] 徐全清. A series of ZnIJII) and CdIJII) coordinationcompounds based on 4-(4H-1,2,4-triazol-4-yl)benzoic acid: synthesis, structure andphotoluminescence properties , 2015 .
[35] E. Cremades,et al. Origin of slow magnetic relaxation in Kramers ions with non-uniaxial anisotropy , 2014, Nature Communications.
[36] Keith S. Murray,et al. PHI: A powerful new program for the analysis of anisotropic monomeric and exchange‐coupled polynuclear d‐ and f‐block complexes , 2013, J. Comput. Chem..
[37] Joseph M. Zadrozny,et al. Slow magnetization dynamics in a series of two-coordinate iron(II) complexes , 2013 .
[38] Christopher J. Chang,et al. Slow magnetic relaxation in a high-spin iron(II) complex. , 2010, Journal of the American Chemical Society.
[39] Richard J. Gildea,et al. OLEX2: a complete structure solution, refinement and analysis program , 2009 .
[40] Dylan Jayatilaka,et al. Hirshfeld surface analysis , 2009 .
[41] W. Wernsdorfer,et al. Molecular spintronics using single-molecule magnets. , 2008, Nature materials.
[42] Michael N. Leuenberger,et al. Quantum computing in molecular magnets , 2000, Nature.
[43] Dispersion and Absorption in Dielectrics 1 , 2022 .