1. Deep-brain stimulation through UCNP-mediated NIR optogenetics.
El trabajo completo está disponible en los enlaces que acompañan a este inciso.
2. Modified Upconverting Nanoparticles.
4. Más sobre PEG-Modified Upconverting Nanoparticles.
a)
b) La página original, la borraron:
c) Artículo referenciado:
Fuente:
https://www.researchgate.net/publication/342418283_Monitoring_the_collective_behavior_of_enzymatic_nanomotors_in_vitro_and_in_vivo_by_PET-CT
Resguardo:
https://archive.md/3hAe6
6. Upconverting Nanoparticles.
Resguardo:
https://archive.md/H350G
8. Polarization Effects and Resonance Absorption in Terahertz Wave Diffraction on Graphene Metasurfaces.
https://archive.md/H350G
8. Polarization Effects and Resonance Absorption in Terahertz Wave Diffraction on Graphene Metasurfaces.
Fuente:
https://www.researchgate.
Resguardo:
https://archive.md/YrW7q
9. Hacia las interfaces de grafeno para conectar neuronas a dispositivos electrónicos.
Resguardo:
https://archive.md/1IpW8
10. Tesis doctoral: Electromagnetic Applications of Graphene and Graphene Oxide.
https://archive.md/1IpW8
10. Tesis doctoral: Electromagnetic Applications of Graphene and Graphene Oxide.
Fuente:
https://www.research. manchester.ac.uk/portal/files/ 83387231/FULL_TEXT.PDF
Resguardo:
https://drive.google.com/file/d/1Oia2B-aMmrb7QfBYhhXKmYIlIwsxbvqg/view?usp=sharing
11. The electromagnetic property of chemically reduced graphene oxide and its application as microwave absorbing material.
https://www.research.
Resguardo:
https://drive.google.com/file/d/1Oia2B-aMmrb7QfBYhhXKmYIlIwsxbvqg/view?usp=sharing
11. The electromagnetic property of chemically reduced graphene oxide and its application as microwave absorbing material.
Resguardo:
13. Localized Electromagnetic Resonance Enabled THz Photothermoelectric Detection in Graphene.
Fuente:
Fuente:
https://www.lavanguardia.
Resguardo:
https://archive.ph/DVfaP#selection-1161.0-1161.52
16. Visible graphene plasmons from electrons.
https://archive.ph/DVfaP#selection-1161.0-1161.52
16. Visible graphene plasmons from electrons.
Resguardo:
https://archive.ph/0y4lJ
17. Far-field excitation of single graphene plasmon cavities with ultracompressed mode volumes.
https://archive.ph/0y4lJ
17. Far-field excitation of single graphene plasmon cavities with ultracompressed mode volumes.
Resguardo:
https://archive.ph/rGgDL
18. La plasmónica del Grafeno, curso de Máster y Doctorado.
https://archive.ph/rGgDL
18. La plasmónica del Grafeno, curso de Máster y Doctorado.
Resguardo:
https://archive.ph/YrYRf
https://archive.ph/YrYRf
20. Magnetoplasmonic nanorings: novel architectures with tunable magneto-optical activity in wide wavelength ranges.
21. Novel magnetic vortex nanorings/nanodiscs: Synthesis and theranostic applications*.
Resguardo:
https://archive.ph/UGMdm
https://archive.ph/UGMdm
22. Electromagnetic wave absorption in reduced graphene oxide functionalized with Fe3O4/Fe nanorings.
Fuente:
https://www.researchgate.
Resguardo:
https://archive.ph/7DVdF
23. The Lord of the NanoRings: Cyclodextrins and the battle against SARS-CoV-2
Fuente:
https://pubmed.ncbi.nlm.nih.gov/32717282/
Resguardo:
https://archive.ph/7rUtQ
24. Ciclodextrina: la conexión entre ‘El Señor de los Anillos’ y la pandemia de covid-19
Fuente:
https://www.elsaltodiario.com/coronavirus/ciclodextrina-conexion-senor-anillos-pandemia-covid19
Resguardo:
https://archive.ph/wUZCt
25. The Lord of the NanoRings: Cyclodextrins and the battle against SARS-CoV-2.
Publicado por la OMS.
Fuente:
https://search.bvsalud.org/global-literature-on-novel-coronavirus-2019-ncov/resource/es/covidwho-670401
Resguardo:
https://archive.md/QJyPE
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