Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Sara Simonato"'
Publikováno v:
Zeitschrift für anorganische und allgemeine Chemie. 645:1372-1378
Doxorubicin-filled boehmite nanocontainers, DOX@γ-AlO(OH), with a mean diameter of 40 nm and a wall thickness of 10 nm are prepared via a microemulsion strategy and studied as drug carriers for cancer treatment. Nanocontainer structure and drug load
Publikováno v:
RSC Advances. 6:12446-12452
Magnesium 2-aminoethylphosphonate (Mg2O(2AEP) × 4H2O) nanoparticles (particle diameter: 20–30 nm; specific surface area: 360 m2 g−1) are presented for selective separation of CO2 and CH4. Due to the base amino function, the nanoparticles can rev
Publikováno v:
Anais do Congresso de Iniciação Científica da Unicamp.
Autor:
Jens Möllmer, Reiner Staudt, Sara Simonato, Frauke Alves, Claus Feldmann, Joachim G. Heck, Joanna Napp, Holger M. Reichardt, Marcus Lange
Publikováno v:
Journal of the American Chemical Society. 137(23)
Phosphate-based inorganic-organic hybrid nanoparticles (IOH-NPs) with the general composition [M](2+)[Rfunction(O)PO3](2-) (M = ZrO, Mg2O; R = functional organic group) show multipurpose and multifunctional properties. If [Rfunction(O)PO3](2-) is a f
Autor:
Angela Puls, Frieder Dreisbach, Sara Simonato, Jens Möllmer, Henriette Gröger, Claus Feldmann, Reiner Staudt
Publikováno v:
Chem. Commun.. 48:844-846
The CO(2) uptake on nanoscale AlO(OH) hollow spheres (260 mg g(-1)) as a new material is comparable to that on many metal-organic frameworks although their specific surface area is much lower (530 m(2) g(¬1)versus 1500-6000 m(2) g(¬1)). Suited temp
Autor:
Reiner Staudt, Michael Türk, Sara Simonato, Claus Feldmann, Monika Johannsen, Dennis Bolten, J. Kern
Publikováno v:
Chemie Ingenieur Technik. 85:1362-1362
Nanoskalige Tragermaterialien zur Adsorption von Enantiomeren Dipl.-Ing. J. Kern (E-Mail: johannes.kern@tuhh.de), Dr.-Ing. D. Bolten, M. Sc. Industr. Chem. S. Simonato, Prof. Dr. C. Feldmann, Prof. Dr.-Ing. R. Staudt, Prof. Dr.-Ing. M. Turk, Dr. habi
Publikováno v:
Chemical Communications. 48:7046
The inorganic-organic hybrid magnesium aminoethyl phosphonate (Mg(AEP)(H(2)O), particle diameter: 20 nm; specific surface area: 322(10) m(2) g(-1); pore volume: 0.9(1) cm(3) g(-1)) shows reversible CO(2) sorption (152(5) mg g(-1)) at high pressure (