Using molecular building blocks to self-assemble lattices supporting long-range magnetic order is currently an active area of solid-state chemistry. Consequently, it is the realm of supramolecular chemistry that synthetic chemists are turning to in order to develop techniques for the synthesis of structurally well-defined supramolecular materials. In recent years we have investigated the versatility and usefulness of two classes of molecular building blocks, namely, tris-oxalato transition-metal (M. Pilkington and S. Decurtins, in “Magnetoscience—From Molecules to Materials,” Wiley–VCH, 2000), and octacyanometalate complexes (Pilkington and Decurtins, Chimia 54, 593 (2001)), for applications in the field of molecule-based magnets. Anionic, ...
The work herein describes the design, synthesis, and characterization of magnetic molecules and chai...
298 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2000.Improved preparations are giv...
Glaser T. Rational design of single-molecule magnets: a supramolecular approach. Chemical Communicat...
The field of molecule-based magnets is a relatively new branch of chemistry, which involves the desi...
The field of molecule-based magnets is a relatively new branch of chemistry, which involves the desi...
Cleverly designed molecular building blocks provide chemists with the tools of a powerful molecular-...
Our research goals are focused on the preparation of novel molecule-based materials that possess spe...
Our research goals are focused on the preparation of novel molecule-based materials that possess spe...
Cleverly designed molecular building blocks provide chemists with the tools of a powerful molecular-...
complexes The study of molecular magnets is a hot topic in the field of material science because of ...
The work presented herein describes efforts to synthesize and characterize cyanide-bridged molecular...
Based on a synthetic strategy, extended anionic, homo and bimetallic oxalato-bridged transition-meta...
Based on a synthetic strategy, extended anionic, homo and bimetallic oxalato-bridged transition-meta...
100-106The reaction of oxalic acid, metal(II) salt and tetra(n-butyl) ammonium bromide or dimethyl...
The structure and magnetic properties of novel hybrid molecule-based magnets formed by combination o...
The work herein describes the design, synthesis, and characterization of magnetic molecules and chai...
298 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2000.Improved preparations are giv...
Glaser T. Rational design of single-molecule magnets: a supramolecular approach. Chemical Communicat...
The field of molecule-based magnets is a relatively new branch of chemistry, which involves the desi...
The field of molecule-based magnets is a relatively new branch of chemistry, which involves the desi...
Cleverly designed molecular building blocks provide chemists with the tools of a powerful molecular-...
Our research goals are focused on the preparation of novel molecule-based materials that possess spe...
Our research goals are focused on the preparation of novel molecule-based materials that possess spe...
Cleverly designed molecular building blocks provide chemists with the tools of a powerful molecular-...
complexes The study of molecular magnets is a hot topic in the field of material science because of ...
The work presented herein describes efforts to synthesize and characterize cyanide-bridged molecular...
Based on a synthetic strategy, extended anionic, homo and bimetallic oxalato-bridged transition-meta...
Based on a synthetic strategy, extended anionic, homo and bimetallic oxalato-bridged transition-meta...
100-106The reaction of oxalic acid, metal(II) salt and tetra(n-butyl) ammonium bromide or dimethyl...
The structure and magnetic properties of novel hybrid molecule-based magnets formed by combination o...
The work herein describes the design, synthesis, and characterization of magnetic molecules and chai...
298 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2000.Improved preparations are giv...
Glaser T. Rational design of single-molecule magnets: a supramolecular approach. Chemical Communicat...