1 INFORME TÉCNICO FINAL DETECCIÓN DE GRAFENO EN VACUNAS COVID.pdf


Vista previa del archivo PDF 1informetcnicofinaldeteccindegrafenoenvacunascovid.pdf


Página 1...16 17 18192030

Vista previa de texto


Kozawa D, Miyauchi Y, Mouri S, Matsuda K. Exploring the Origin of Blue and Ultraviolet
Fluorescence in Graphene Oxide. J Phys Chem Lett. 2013 Jun 20;4(12):2035-40. 2013.
Liao Y, Zhou X, Fu Y, Xing D. Graphene Oxide as a Bifunctional Material toward Superior RNA
Protection and Extraction. ACS Appl Mater Interfaces. 2018 Sep 12;10(36):30227-30234. 2018
Lu N, Huang Y, Li HB, Li Z, Yang J. First principles nuclear magnetic resonance signatures of
graphene oxide. J Chem Phys. 2010 Jul 21;133(3):034502. doi: 10.1063/1.3455715. PMID:
20649332.
Manoratne C.H., S.R.D.Rosa, and I.R.M. Kottegoda. XRD-HTA, UV Visible, FTIR and SEM
Interpretation of Reduced Graphene Oxide Synthesized from High Purity Vein Graphite. Material
Science Research India Vol. 14(1), 19-30 (2017).
Marquina, J.;I Power, Ch.II. y González, J. III. Espectroscopía Raman del grafeno monocapa y el
grafito: acoplamiento electrón fonón y efectos no adiabáticos. Revista Tumbaga 2010 | 5 | 183194
Martin-Gullon, I, Juana M. Pérez, Daniel Domene, Anibal J.A. Salgado-Casanova, Ljubisa R.
Radovic, New insights into oxygen surface coverage and the resulting two-component structure
of graphene oxide, Carbon, Volume 158, 2020, Pages 406-417,
Meyer, J., Geim, A., Katsnelson, M. et al. The structure of suspended graphene sheets. Nature
446, 60–63 (2007).
Ni, Z., Wang Y, and Shen Z. Raman Spectroscopy and Imaging of Graphene, Nano Res (2008) 1:
273 291
Palacio I, Koen Lauwaet, Luis Vázquez, Francisco Javier Palomares a, Héctor González-Herrero,
José Ignacio Martínez, Lucía Aballe, Michael Foerster, Mar García-Hernández and José Ángel
Martín-Gago. Ultra-thin NaCl films as protective layers for Graphene. Nanoscale, 2019, 11,
16767-16772
Palmieri V, Perini G, De Spirito M, Papi M. Graphene oxide touches blood: in vivo interactions of
bio-coronated 2D materials. Nanoscale Horiz. 2019 Mar 1;4(2):273-290. doi:
10.1039/c8nh00318a. Epub 2018 Oct 31. PMID: 32254085.
Panchal V, Yang Y, Cheng G, Hu J, Kruskopf M, Liu CI, Rigosi AF, Melios C, Hight Walker AR, Newell
DB, Kazakova O, Elmquist RE. Confocal laser scanning microscopy for rapid optical
characterization of graphene. Commun Phys. 2018
Paredes JI, Villar-Rodil S, Martínez-Alonso A, Tascón JM. Graphene oxide dispersions in organic
solvents. Langmuir. 24(19):10560-4. 2008
Ramos Fernández Gloria. Efecto de la química superficial del óxido de grafeno en el desarrollo
de Aplicaciones. TESIS DOCTORAL. Universidad de Alicante. 2017.
Sadezky, A. H. Muckenhuber, H. Grothe, R. Niessner, U. Pöschl, Raman microspectroscopy of
soot and related carbonaceous materials: Spectral analysis and structural information, Carbon,
Volume 43, Issue 8,2005, Pages 1731-1742
Sarkar, S.K., K.K. Raul, S.S. Pradhan, S. Basu, A. Nayak, Magnetic properties of graphite oxide
and reduced graphene oxide, Physica E: Low-dimensional Systems and Nanostructures,Volume
64, 2014,Pages 78-82.
17

Puede verificar la autenticidad, validez e integridad de este documento en la dirección:
https://verificarfirma.ual.es/verificarfirma/code/tSSoCCK0v5uLGK1kjtpwdg==
Firmado Por
ID. FIRMA

Pablo Campra Madrid
afirma.ual.es

tSSoCCK0v5uLGK1kjtpwdg==

tSSoCCK0v5uLGK1kjtpwdg==

Fecha

02/11/2021

PÁGINA

18/22