Rocio Litran Ramos
Rocio Litran Ramos
Departamento de Física de la Materia Condensada UCA
Потвърден имейл адрес: gm.uca.es
Permanent magnetism, magnetic anisotropy, and hysteresis of thiol-capped gold nanoparticles
P Crespo, R Litrán, TC Rojas, M Multigner, JM De la Fuente, ...
Physical review letters 93 (8), 087204, 2004
Ferromagnetism in fcc twinned 2.4 nm size Pd nanoparticles
B Sampedro, P Crespo, A Hernando, R Litrán, JCS López, CL Cartes, ...
Physical review letters 91 (23), 237203, 2003
Sonogels and derived materials
E Blanco, L Esquivias, R Litrán, M Piñero, M Ramírez‐del‐Solar, ...
Applied organometallic chemistry 13 (5), 399-418, 1999
Magnetic and microstructural analysis of palladium nanoparticles with different capping systems
R Litrán, B Sampedro, TC Rojas, M Multigner, JC Sánchez-López, ...
Physical Review B 73 (5), 054404, 2006
Gold nanoparticles with different capping systems: an electronic and structural XAS analysis
C López-Cartes, TC Rojas, R Litrán, D Martínez-Martínez, ...
The Journal of Physical Chemistry B 109 (18), 8761-8766, 2005
Preparation and characterization of fluorescent CdS quantum dots used for the direct detection of GST fusion proteins
JJ Beato-López, C Fernández-Ponce, E Blanco, C Barrera-Solano, ...
Nanomaterials and Nanotechnology 2, 10, 2012
Size and surface effects in the magnetic properties of maghemite and magnetite coated nanoparticles
D Ortega, E Vélez-Fort, DA García, R García, R Litrán, C Barrera-Solano, ...
Philosophical Transactions of the Royal Society A: Mathematical, Physical …, 2010
Trapping copper phthalocyanine in a silica sono-xerogel
R Litran, E Blanco, M Ramírez-del-Solar, L Esquivias
Journal of Sol-Gel Science and Technology 8, 985-990, 1997
Room temperature permanent magnetism in thiol-capped Pd-rich nanoparticles
A Hernando, B Sampedro, R Litrán, TC Rojas, JC Sánchez-López, ...
Nanotechnology 17 (5), 1449, 2006
Influence of size and surface capping on photoluminescence and cytotoxicity of gold nanoparticles
C Fernández-Ponce, JP Muñoz-Miranda, DM de Los Santos, E Aguado, ...
Journal of Nanoparticle Research 20, 1-19, 2018
Aggregation effects in non-linear absorption of CuPc–SiO2 sono-xerogels
R Litrán, E Blanco, M Ramı́rez-del-Solar
Journal of non-crystalline solids 333 (3), 327-332, 2004
Dispersion of the nonlinear absorption of copper phthalocyanine in a silica xerogel matrix through the visible spectrum
E Blanco, D Narayana Rao, FJ Aranda, D Rao, S Tripathy, JA Akkara, ...
Journal of applied physics 83 (6), 3441-3443, 1998
Immune modulation by the hepatitis C virus core protein
C Fernández‐Ponce, M Dominguez‐Villar, JP Muñoz‐Miranda, ...
Journal of viral hepatitis 24 (5), 350-356, 2017
Magneto-optic Faraday effect in maghemite nanoparticles/silica matrix nanocomposites prepared by the sol–gel method
M Domínguez, D Ortega, JS Garitaonandía, R Litrán, C Barrera-Solano, ...
Journal of Magnetism and Magnetic Materials 320 (20), e725-e729, 2008
Photoluminescence from CdS quantum dots in silica gel
N de la Rosa-Fox, M Piñero, R Litrán, L Esquivias
Journal of sol-gel science and technology 26 (1-3), 947-951, 2003
Glutathione-magnetite nanoparticles: Synthesis and physical characterization for application as MRI contrast agent
JJ Beato-López, M Domínguez, M Ramírez-del-Solar, R Litrán
SN Applied Sciences 2, 1-14, 2020
CdTe quantum dots linked to Glutathione as a bridge for protein crosslinking
JJ Beato-Lopez, ML Espinazo, C Fernández-Ponce, E Blanco, ...
Journal of Luminescence 187, 193-200, 2017
Exploring the properties and optical sensing capability of sol− gel materials containing a covalently bonded binucleating cryptand
MG Basallote, E Blanco, M Blázquez, MJ Fernández-Trujillo, R Litrán, ...
Chemistry of materials 15 (10), 2025-2032, 2003
Influence of processing induced textural effect on aggregation level in CuPc–SiO2 sonogel composites
R Litrán, M Ramı́rez-del-Solar, E Blanco
Journal of non-crystalline solids 318 (1-2), 49-55, 2003
Magnetic nanoparticles comprising a core formed from noble metals
RL Ramos, TCR Ruiz, JCS Lopez, AH Grande, PC Del Arco, BS Rozas
US Patent 7,960,025, 2011
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