A series of functional hybrid inorganic−organic adsorbent materials have been prepared through postsynthetic grafting of mesoporous zirconium titanate xerogel powders using a range of synthesized and commercial mono-, bis-, and tris-phosphonic acids, many of which have never before been investigated for the preparation of hybrid phases. The hybrid materials have been characterized using thermogravimetric analysis, diffuse reflectance infrared (DRIFT) and 31P MAS NMR spectroscopic techniques and their adsorption properties studied using a 153Gd radiotracer. The highest level of surface functionalization (molecules/nm2) was observed for methylphosphonic acid (3 molecules/nm2). The level of functionalization decreased with an increase in the n...
Triflic acid-functionalized Zr-TMS (zirconium oxide with a mesostructured framework; TMS, transition...
Hierarchical morphologies in metal oxides are advantageous for many applications, including controll...
Development of state-of-the-art selective adsorbent materials for recovery of rare earth elements (R...
The hydrolytic stability of lanthanide and actinide selective mono- and polyphosphonate-functionaliz...
The hydrolytic stability of lanthanide and actinide selective mono- and polyphosphonate-functionaliz...
A method is presented for the preparation of zirconium titanate mixed oxides in bead form having hie...
A new kind of inorganic–organic hybrid zirconium phosphonate material (NTAZP) with mesoporous struct...
Inorganic–organic hybrid titanium phosphonate materials with a hierarchically-porous structure were ...
To take advantage of the full potential of functionalized transition metal oxides, a well-understood...
Microporous and mesoporous oxides, phosphates, borates, aluminates, silicates, organicinorganic hybr...
We have explored the potentials of zirconium MOF materials to capture different metal ion cationic a...
Titanium in different amounts has been successfully doped into the zirconium-based metal-organic fra...
International audienceThis study focuses on the preparation of innovative nanocomposite materials ba...
The effect of phosphonate groups on selective lanthanide sorption for a series of inorganic-organic ...
International audienceDifferent types of materials have been developed for the solid/liquid uranium ...
Triflic acid-functionalized Zr-TMS (zirconium oxide with a mesostructured framework; TMS, transition...
Hierarchical morphologies in metal oxides are advantageous for many applications, including controll...
Development of state-of-the-art selective adsorbent materials for recovery of rare earth elements (R...
The hydrolytic stability of lanthanide and actinide selective mono- and polyphosphonate-functionaliz...
The hydrolytic stability of lanthanide and actinide selective mono- and polyphosphonate-functionaliz...
A method is presented for the preparation of zirconium titanate mixed oxides in bead form having hie...
A new kind of inorganic–organic hybrid zirconium phosphonate material (NTAZP) with mesoporous struct...
Inorganic–organic hybrid titanium phosphonate materials with a hierarchically-porous structure were ...
To take advantage of the full potential of functionalized transition metal oxides, a well-understood...
Microporous and mesoporous oxides, phosphates, borates, aluminates, silicates, organicinorganic hybr...
We have explored the potentials of zirconium MOF materials to capture different metal ion cationic a...
Titanium in different amounts has been successfully doped into the zirconium-based metal-organic fra...
International audienceThis study focuses on the preparation of innovative nanocomposite materials ba...
The effect of phosphonate groups on selective lanthanide sorption for a series of inorganic-organic ...
International audienceDifferent types of materials have been developed for the solid/liquid uranium ...
Triflic acid-functionalized Zr-TMS (zirconium oxide with a mesostructured framework; TMS, transition...
Hierarchical morphologies in metal oxides are advantageous for many applications, including controll...
Development of state-of-the-art selective adsorbent materials for recovery of rare earth elements (R...