17 results on '"Medranda, Daniel"'
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2. Fabrication of graphene-oxide/SmFeO3 interfaces by ambient pressure/high-temperature fusion of Fe3C@CNOs with Sm2O3@C-capsules
3. Wustite-induced formation of sp3-rich faceted carbon foam: The key role of cooling rate on sp3-abundance (and oxide crystal-habit) control
4. Controlled fabrication of monolayer carbon foam continuously filled with ferromagnetic FePd3 crystals: The key role of filled bilayer/monolayer carbon onions-like capsules as synthesis-precursors
5. Evidence of sp3-rich nano-diamond-like characteristics in amorphous carbon foam continuously filled with α-Fe
6. Peeling off effects in vertically aligned Fe3C filled carbon nanotubes films grown by pyrolysis of ferrocene.
7. Temperature-dependent c-axis lattice-spacing reduction and novel structural recrystallization in carbon nano-onions filled with Fe3C/α-Fe nanocrystals
8. Ring fusion in tetrathienylethene cored perylene diimide tetramers affords acceptors with strong and broad absorption in the near-UV to visible region
9. Water-assisted structural manipulation of ferromagnetically filled carbon onions: The case of high pressure Fe3O4
10. On the dynamics of metal filled CNOs fusion: the case of sp3-rich Cu filled carbon foam
11. Water-assisted Structural Manipulation of Ferromagnetically Filled Carbon Onions: The Case of High Pressure Fe3O4.
12. Cl-Assisted Large Scale Synthesis of Cm-Scale Buckypapers of Fe3C-Filled Carbon Nanotubes with Pseudo-Capacitor Properties: The Key Role of SBA-16 Catalyst Support as Synthesis Promoter
13. Peeling off effects in vertically aligned Fe3C filled carbon nanotubes films grown by pyrolysis of ferrocene
14. Cl-Assisted Large Scale Synthesis of Cm-Scale Buckypapers of Fe3C-Filled Carbon Nanotubes with Pseudo-Capacitor Properties: The Key Role of SBA-16 Catalyst Support as Synthesis Promoter.
15. Sub-Poissonian and anti-bunching criteria via majorization of statistics
16. Proyecto de integración urbana en el barrio de Tetuán [Hojas Resumen]
17. Water-assisted Structural Manipulation of Ferromagnetically Filled Carbon Onions: The Case of High Pressure Fe3O4.
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