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Lipidic nanovesicles stabilize suspensions of metal oxide nanoparticlesJiménez-Rojo, N; Lete, MG; Rojas, E; Gil, D; Valle, M; Alonso, A; Moya, SE; Goñi, FM. Chem. Phys. Lipids, 2015, 191, 84-90
Stabilization of AuNPs by monofunctional triazole linked to ferrocene, ferricenium, or coumarin and applications to synthesis, sensing, and catalysisLi, N; Zhao, P; Igartua, ME; Rapakousiou, A; Salmon, L; Moya, S; Ruiz, J; Astruc, D. Inorg. Chem., 2014, 53, 11802-11808
"click" chemistry mildly stabilizes bifunctional gold nanoparticles for sensing and catalysisLi, N; Zhao, P; Liu, N; Echeverria, M; Moya, S; Salmon, L; Ruiz, J; Astruc, D. Chem. Eur. J., 2014, 20, 8363-8369
Potential impact of metal oxide nanoparticles on the immune system: The role of integrins, L-selectin and the chemokine receptor CXCR4Lozano-Fernández, T; Ballester-Antxordoki, L; Pérez-Temprano, N; Rojas, E; Sanz, D; Iglesias-Gaspar, M; Moya, S; González-Fernández, Nanomed. Nanotechnol. Biol. Med., 2014, 10, 1301-1310
Uptake, biological fate, and toxicity of metal oxide nanoparticlesLlop, J; Estrela-Lopis, I; Ziolo, RF; González, A; Fleddermann, J; Dorn, M; Vallejo, VG; Simon-Vazquez, R; Donath, E; Mao, Z; Gao, C; Moya, SE. Part. Part. Syst. Charact., 2014, 31, 24-35
Layer-by-layer assembly of polymersomes and polyelectrolytes on planar surfaces and microsized colloidal particlesCoustet, M; Irigoyen, J; Garcia, TA; Murray, RA; Romero, G; Susana Cortizo, M; Knoll, W; Azzaroni, O; Moya, SE. J. Colloid Interface Sci., 2014, 421, 132-140
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