Rodrigues et al., 2015 - Google Patents
The first report on phosphonate-based homopolymers combining both chelating and thermosensitive properties of gadolinium: synthesis and evaluationRodrigues et al., 2015
View PDF- Document ID
- 3351879956423089349
- Author
- Rodrigues D
- Dacheux N
- Pellet-Rostaing S
- Faur C
- Bouyer D
- Monge S
- Publication year
- Publication venue
- Polymer Chemistry
External Links
Snippet
An original phosphonate-based acrylamide was first prepared in four steps including the incorporation of a valuable carbamoylmethylphosphonate moiety. This monomer was then polymerized, thus leading to poly (diethyl-6-(acrylamido) …
- UIWYJDYFSGRHKR-UHFFFAOYSA-N Gadolinium data:image/svg+xml;base64,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 data:image/svg+xml;base64,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 [Gd] 0 title abstract description 15
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Ipekci et al. | Application of heterogeneous ion exchange membranes for simultaneous separation and recovery of lithium and boron from aqueous solution with bipolar membrane electrodialysis (EDBM) | |
Croft et al. | Separation of lanthanum (III), gadolinium (III) and ytterbium (III) from sulfuric acid solutions by using a polymer inclusion membrane | |
Vigneau et al. | Ionic imprinted resins based on EDTA and DTPA derivatives for lanthanides (III) separation | |
Ennigrou et al. | Cadmium removal from aqueous solutions by polyelectrolyte enhanced ultrafiltration | |
Kim et al. | Thermo-responsive copolymers with ionic group as novel draw solutes for forward osmosis processes | |
US7279096B2 (en) | Polymer based permeable membrane for removal of ions | |
Xu et al. | Stable ionic liquid-based polymer inclusion membranes for lithium and magnesium separation | |
CN109715567A (en) | CO2The regeneration and recycling of the responsiveness adsorbent of realization | |
Rodrigues et al. | The first report on phosphonate-based homopolymers combining both chelating and thermosensitive properties of gadolinium: synthesis and evaluation | |
KR101206826B1 (en) | Improved preparation of metal ion imprinted microporous polymer particles | |
Ji et al. | In-situ crosslinked AEMs with self-assembled nanostructure for acid recovery | |
Rodrigues et al. | Sorption properties of carbamoylmethylphosphonated-based polymer combining both sorption and thermosensitive properties: New valuable hydrosoluble materials for rare earth elements sorption | |
Moon et al. | Versatile synthetic platform for polymer membrane libraries using functional networks | |
Zhang et al. | Recycling scale inhibitor wastes into pH-responsive complexes to treat wastewater produced from spent lithium-ion battery disposal | |
CN100448526C (en) | Synthesis of Ionically Imprinted Polymer Particles | |
Zulfikar et al. | Separation of yttrium from aqueous solution using ionic imprinted polymers | |
Zhao et al. | Enrichment of Cd2+ from water with a calcium alginate hydrogel filtration membrane | |
Rodrigues et al. | Highlighting the selective properties of carbamoylmethylphosphonated hydrosoluble polymers for Gd (III)/Th (IV)/U (VI) separation | |
CN111171071B (en) | N, O-type multi-tooth functional monomer, preparation method thereof and application thereof in ion imprinting material | |
Li et al. | 3D electrospray printing PEI-TMC nanofiltration membrane for efficient and long-term stable separation of Mg2+/Li+ | |
KR101586275B1 (en) | Dendronized hyperbranched polymer for selective adsorption of metal ion, adsorbent containing the same, and manufacturing method thereof | |
US6960645B2 (en) | Synthesis of ion imprinted polymer particles | |
Alves et al. | Smart polymeric nanoparticles for boron scavenging | |
CN101418062B (en) | Synthesis of Ionically Imprinted Polymer Particles | |
JP4919447B2 (en) | Photoresponsive metal ion adsorbing material and metal ion recovery method |