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2. Expanding the dimensionality of bis(tetrazolyl)alkane-based Fe(II) coordination polymers by the application of dinitrile coligands.

4. Extremely Slow Thermally‐Induced Spin Crossover in the Two‐Dimensional Network [Fe(bbtr)3](BF4)2.

5. Extremely Slow Thermally‐Induced Spin Crossover in the Two‐Dimensional Network [Fe(bbtr)3](BF4)2.

15. Spatiotemporal Studies of the One‐Dimensional Coordination Polymer [Fe(ebtz) 2 (C 2 H 5 CN) 2 ](BF 4 ) 2 : Tug of War between the Nitrile Reorientation Versus Crystal Lattice as a Tool for Tuning the Spin Crossover Properties**

22. 'Normal' and 'reverse' spin crossover induced by two different structural events in iron( ) coordination polymer

28. Spatiotemporal Studies of the One‐Dimensional Coordination Polymer [Fe(ebtz)2(C2H5CN)2](BF4)2: Tug of War between the Nitrile Reorientation Versus Crystal Lattice as a Tool for Tuning the Spin Crossover Properties

29. The first amino acid bound manganese–calcium clusters: a {[MnIII3Ca]2} methylalanine complex, and a [MnIII6Ca] trigonal prism.

30. Magnetic dimensionality and the crystal structure of two copper(ii) coordination polymers containing Cu6 and Cu2 building units.

31. Synthesis and magneto-structural studies on a new family of carbonato bridged 3d–4f complexes featuring a [CoII3LnIII3(CO3)] (Ln = La, Gd, Tb, Dy and Ho) core: slow magnetic relaxation displayed by the cobalt(ii)–dysprosium(iii) analogue

33. Nitrile-rich coordination polymer 1[infinity]{[Fe[(C[H.sub.3]CN).sub.4](pyrazine)][(Cl[O.sub.4]).sub.2]} exhibiting a HS -> LS transition

34. A new family of spin-crossover complexes based on a [Fe.sup.II][(tetrazolyl).sub.4][(MeCN).sub.2]-type core

35. Evidence of Ligand Elasticity Occurring in Temperature‐, Light‐, and Pressure‐Induced Spin Crossover in 1D Coordination Polymers [Fe(3ditz) 3 ]X 2 (X = ClO 4 – , BF 4 – )

38. Sliding Polymeric Layers and Anion Displacement Coupled with Spin Crossover in Two‐Dimensional Networks of [Fe(hbtz)2(CH3CN)2](BF4)2.

39. Sliding Polymeric Layers and Anion Displacement Coupled with Spin Crossover in Two‐Dimensional Networks of [Fe(hbtz)2(CH3CN)2](BF4)2.

42. Synthesis and magneto-structural studies on a new family of carbonato bridged 3d–4f complexes featuring a [CoII3LnIII3(CO3)] (Ln = La, Gd, Tb, Dy and Ho) core: slow magnetic relaxation displayed by the cobalt(ii)–dysprosium(iii) analogue

43. Synthesis, crystal structure, luminescent and magnetic properties of europium(III) and terbium(III) complexes with a bidentate benzoate and a tripod N7 ligand containing three imidazole, [LnIII(H3L)benzoate](ClO4)2·H2O·2MeOH (LnIII=EuIII and TbIII)

45. Evidence of Ligand Elasticity Occurring in Temperature-, Light-, and Pressure-Induced Spin Crossover in 1D Coordination Polymers [Fe(3ditz)3]X2 (X = ClO4-, BF4-).

46. Evidence of Ligand Elasticity Occurring in Temperature-, Light-, and Pressure-Induced Spin Crossover in 1D Coordination Polymers [Fe(3ditz)3]X2 (X = ClO4-, BF4-).

48. Influence of conformational changes on spin crossover properties and superstructure formation in 2D coordination polymers [Fe(hbtz)2(RCN)2](ClO4)2.

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