
ul. F. Joliot-Curie 14
robert.bronisz@uwr.edu.pl
tel. +48 71 375 72 27, +48 71 375 73 51
Zainteresowania
- molecules
- spin crossover
- iron
- general chemistry
- crystals
- coordination polymers
- ligands
- molecule
- bridging ligands
- inorganic nuclear chemistry
Dyscyplina naukowa
- nauki chemiczne
Najnowsze publikacje
- "Normal" and "reverse" spin crossover induced by two different structural events in iron(II) coordination polymer.
- 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.
- Extremely Slow Thermally‐Induced Spin Crossover in the Two‐Dimensional Network [Fe(bbtr)3](BF4)2
- Single crystal-to-single crystal transformation – from two distinct to three distinct spin crossover centers in 2D coordination polymer [Fe(bbtr)3](CF3SO3)2
- Expanding the dimensionality of bis(tetrazolyl)alkane-based Fe(II) coordination polymers by the application of dinitrile coligands
- Two ways of spin crossover in an iron(II) coordination polymer associated with conformational changes of a bridging ligand.
- Sliding polymeric layers and anion displacement coupled with spin crossover in two-dimensional networks of [Fe(hbtz)2(CH3CN)2](BF4)2.
- Does the Structural Preorganization Contribute to the “Two-Way” Spin Crossover in 1,1′-Di(tetrazol-1-ylo)methane-Based Fe(II) Coordination Polymer Containing Conformationally Labile Adiponitrile Coligand?
- Synergic Effect of Phthalide Lactones and Fluconazole and Its New Analogues as a Factor Limiting the Use of Azole Drugs against Candidiasis
- Double spin transition in a two dimensional Fe(II) coordination network.
- Evidence of ligand elasticity occurring in temperature-, light-, and pressure-induced spin crossover in 1D coordination polymers [Fe(3ditz)3]X2 (X = ClO4-, BF4-).