The hydrolytic stability of lanthanide and actinide selective mono- and polyphosphonate-functionalized mesoporous zirconium titanium oxide adsorbents has been investigated in nitric acid solutions. Hydrolytic degradation of the surfaces, as measured through the fractional loss of phosphorus and elements of the oxide framework, increased by more than an order of magnitude as the nitric acid concentration was increased from 0 to 2 mol/L. The unfunctionalized parent oxide suffered considerable dissolution in 2 mol/L acid over a period of 72 h. Under identical conditions, the fractional Zr and Ti release was reduced to 1 × 10–2 for monophosphonate functionalized hybrids and reached as low as 1 × 10–6 for trisphosphonate functionalized variants....
The potential industrial application of thorium (Th), as well as the environmental and human healthy...
The evaporation-induced self-assembly of mesoporous zirconium titanium oxide thin films prepared fro...
Zirconium hydroxide (Zr(OH)<sub>4</sub>) has excellent sorption properties and wide-ranging reactiv...
The hydrolytic stability of lanthanide and actinide selective mono- and polyphosphonate-functionaliz...
A series of functional hybrid inorganic−organic adsorbent materials have been prepared through posts...
To take advantage of the full potential of functionalized transition metal oxides, a well-understood...
A method is presented for the preparation of zirconium titanate mixed oxides in bead form having hie...
Innovative solid-phase sorbent technologies are needed to extract radionuclides from harsh media for...
he surface and acidic properties of mixed sulfated zirconium and titanium oxides were investigated i...
L’oxyde de zirconium est un matériau prometteur pour le stockage des actinides en formation géologiq...
BackgroundPhosphate (PO43-) is the main etiological factor of eutrophication in surface waters. Meta...
Metal-organic frameworks (MOFs) have been reported to effectively detoxify chemical warfare agents (...
A new kind of inorganic–organic hybrid zirconium phosphonate material (NTAZP) with mesoporous struct...
A facile method for the formation of mesoporosity within nonporous zirconium hydr(oxides) (ZrO2/Zr...
Porous metal–organic framework (MOF) materials with high thermal and water stability are desirable f...
The potential industrial application of thorium (Th), as well as the environmental and human healthy...
The evaporation-induced self-assembly of mesoporous zirconium titanium oxide thin films prepared fro...
Zirconium hydroxide (Zr(OH)<sub>4</sub>) has excellent sorption properties and wide-ranging reactiv...
The hydrolytic stability of lanthanide and actinide selective mono- and polyphosphonate-functionaliz...
A series of functional hybrid inorganic−organic adsorbent materials have been prepared through posts...
To take advantage of the full potential of functionalized transition metal oxides, a well-understood...
A method is presented for the preparation of zirconium titanate mixed oxides in bead form having hie...
Innovative solid-phase sorbent technologies are needed to extract radionuclides from harsh media for...
he surface and acidic properties of mixed sulfated zirconium and titanium oxides were investigated i...
L’oxyde de zirconium est un matériau prometteur pour le stockage des actinides en formation géologiq...
BackgroundPhosphate (PO43-) is the main etiological factor of eutrophication in surface waters. Meta...
Metal-organic frameworks (MOFs) have been reported to effectively detoxify chemical warfare agents (...
A new kind of inorganic–organic hybrid zirconium phosphonate material (NTAZP) with mesoporous struct...
A facile method for the formation of mesoporosity within nonporous zirconium hydr(oxides) (ZrO2/Zr...
Porous metal–organic framework (MOF) materials with high thermal and water stability are desirable f...
The potential industrial application of thorium (Th), as well as the environmental and human healthy...
The evaporation-induced self-assembly of mesoporous zirconium titanium oxide thin films prepared fro...
Zirconium hydroxide (Zr(OH)<sub>4</sub>) has excellent sorption properties and wide-ranging reactiv...