Anchoring of acidic functional groups to organic linkers acting as ligands in metal phosphonates has been demonstrate to be a valid strategy to develop new proton conductor materials, which exhibit tunable properties and are potentially applicable to proton exchange membranes, such as those used in PEMFCs [1,2]. In this work, the structural and proton conductivity properties of several families of divalent and trivalent metal amino-sulfophosphonates are presented. The chosen ligand, (H2O3PCH2)2-N-(CH2)2-SO3H, was reacted with the appropriate metal salt using highthrough-put screening and/or microwave-assisted synthesis. Different crystal structures haven been solved displaying a variety of metal ligand coordination modes, in whose frame...
Multifunctional metal phosphonates are coordination polymers (CPs) whose structures are usually comp...
Phase transformation dynamics and proton conduction properties are reported for cationic layer-featu...
Metal phosphonates are essentially acidic solids featured by groups such as P-OH, -COOH, etc. Moreov...
Anchoring of acidic functional groups to organic linkers acting as ligands in metal phosphonates has...
Metal phosphonate (MP)-based coordination polymers (CPs) are structurally versatile multifunctional ...
Metal phosphonates exhibit attractive characteristics for proton conductivity, such as tunable funct...
Crystalline acid-functionalized metal phosphonates are potential candidates as proton conducting ele...
Multi-chelating phosphonate ligands are organic linkers alternative to polycarboxylates and other li...
The necessity of energy and power generation is constantly growing. Fossils fuels are quickly becomi...
Crystalline metal phosphonates are referred to as a type of structurally versatile coordination poly...
Multifunctional metal phosphonates are acidic coordination polymers (CPs) with remarkable stability ...
Metal phosphonates containing acidic groups exhibit a wide range of proton conduction properties, wh...
Polymer-based electrolytes in proton exchange membrane fuel cells (PEMFCs) utilize acidic groups as ...
Metal phosphonates are multifunctional solids with remarkable stability and proton conducting proper...
Metal phosphonates are essentially acidic solids featured by groups such as P-OH, -COOH, etc. The pr...
Multifunctional metal phosphonates are coordination polymers (CPs) whose structures are usually comp...
Phase transformation dynamics and proton conduction properties are reported for cationic layer-featu...
Metal phosphonates are essentially acidic solids featured by groups such as P-OH, -COOH, etc. Moreov...
Anchoring of acidic functional groups to organic linkers acting as ligands in metal phosphonates has...
Metal phosphonate (MP)-based coordination polymers (CPs) are structurally versatile multifunctional ...
Metal phosphonates exhibit attractive characteristics for proton conductivity, such as tunable funct...
Crystalline acid-functionalized metal phosphonates are potential candidates as proton conducting ele...
Multi-chelating phosphonate ligands are organic linkers alternative to polycarboxylates and other li...
The necessity of energy and power generation is constantly growing. Fossils fuels are quickly becomi...
Crystalline metal phosphonates are referred to as a type of structurally versatile coordination poly...
Multifunctional metal phosphonates are acidic coordination polymers (CPs) with remarkable stability ...
Metal phosphonates containing acidic groups exhibit a wide range of proton conduction properties, wh...
Polymer-based electrolytes in proton exchange membrane fuel cells (PEMFCs) utilize acidic groups as ...
Metal phosphonates are multifunctional solids with remarkable stability and proton conducting proper...
Metal phosphonates are essentially acidic solids featured by groups such as P-OH, -COOH, etc. The pr...
Multifunctional metal phosphonates are coordination polymers (CPs) whose structures are usually comp...
Phase transformation dynamics and proton conduction properties are reported for cationic layer-featu...
Metal phosphonates are essentially acidic solids featured by groups such as P-OH, -COOH, etc. Moreov...