Física experimental

Biofísica

 

Investigadores:

  • Dr. Jorge Emmanuel Sánchez Rodríguez

Publicaciones:

  • 2020

    • Structure-activity relationship studies of four novel 4-aminopyridine K+ channel blockers, S. Rodríguez-Rangel, A.D. Bravin, K.M. Ramos-Torres, P. Brugarolas, and J.E. Sánchez-Rodríguez, Sci. Rep. 10, 52.
  • 2019

    • Novel 11C-labeled tracer for K+ channels in the brain: synthesis and imaging in non-human primates, R. Neelamegam, N. Guehl, J. Sánchez-Rodríguez et al, Journal of Nuclear Medicine 60 (supplement 1), 486.
  • 2018

    • Strategies for the radiochemical synthesis of 11C-labeled 2-and 3-trifluoromethyl-4-aminopyridine, P, P. Brugolas, B.Y. Yang, J. Sanchez-Rodriguez, S. Telu, V. Pike, Abstracts of papers of the American Chemical Society 255.
    • LRET determination of molecular distances during pH gating of the mammalian inward rectifier Kir1.1b, M. Nanazachvili, J. Sánchez-Rodríguez, B. Fosque, F. Bezanilla, and H. Sackin, Biophys. J. 114, 88-97.
    • Development of a PET radioligand for potassium channels to image CNS demyelination, P. Brugolas, J. Sánchez-Rodríguez, H-M Tsai et al, Sci. Rep. 8, 607.
  • 2017

    • Ion Binding and Charge Movements in the Function of the Na/K-Pump, H. Rui, J.E. Sánchez-Rodríguez, M. Holmgren et al, Biophys, J. 112, 569a.
    • Tuning Voltage Dependent Transitions during the Extracellular Na Binding/Release of the Na/K-ATPase, J.E. Sánchez-Rodríguez, H. Rui, B. Roux et al, Biophys. J. 112, 569A- 570A.
  • 2016

    • [18F]3F4AP: a new PET tracer for brain demyelination, P. Brugarolas, J. Sanchez-Rodriguez, S.H. Cheng et al, Journal Nuclear Medicine 57, 291.
    • ß1 Subunit-Induced Structural Rearrangements Of The Ca2+- And Voltage-Activated (BK) Channel, J.P. Castillo, J. E. Sánchez-Rodríguez, H.C. Hyde et al, Proc. Natl. Acad. Sci. USA 113, E3231.

 


Física de materiales

 

Investigadores:

Publicaciones:

  • 2021

    • Development of a UV-visible-NIR sensor based on LiNiO2 prepared by the coprecipitation method, C. R. Michel and L. Meza-León, Sensors Actuators A: Physcial 321, 112429.
  • 2020

    • Novel UV sensing and photocatalytic properties of nanostructured LiCoO2 prepared by the coprecipitation method, C. R. Michel, M. A. López-Álvarez, A. H. Martínez-Preciado, J. Photochem. Phothobio. A: Chemistry 403, 112842.
    • CdTe:Sn thin films deposited by the simultaneous laser ablation of CdTe and Sn targets, L. P. Rivera, E. García, D. Cardona, A. Pérez-Centeno et al., Mater. Res. Express 7, 015905.
    • ZnO thin films grown at different plasma energies by the laser ablation of metallic Zn with a 532 nm wavelength, J. A. Guerrero de León, A. Pérez-Centeno, G. Gómez-Rosas et al., Mater. Res. Express 7, 016423.
    • Alternative Bi precursor effects on the structural, optical, morphological and photocatalytic properties of BiOI nanostructures, J. F. Florez-Rios, M. A. Santana-Aranda, J. G. Quiñones-Galván, A. Escobedo-Morales, A. Chávez-Chávez, and A. Pérez Centeno, Mater. Res. Express 7, 015912.
    • UV and Visible light photodegradation of methylene blue with graphene decorated titanium dioxide, M. A. Acosta-Esparza, L. P. Rivera, A. Pérez- Centeno et al., Mater. Res. Express 7, 035504.
    • Mercury sulfide thin film deposition using [HgI4]2- complex ions, E. R. Moreno-Close, A. Martínez-Benitez, M. Meléndez Lira, et al. J. Mater. Sci.: Mater. Electron. 31, 4611-4617.
    • Effect of indium doping on structural, optical and electrical properties of cadmium sulfide thin films, R. Olvera, F. de Moure-Flores, S. A. Mayén-Hernández, et al. Chalcogenide Lett. 17, 329-936.
  • 2019

    • Ultraviolet Detection and Photocatalytic Activity of Nanostructured LaCoO3 Prepared by Solution-Polymerization, C.R. Michel, M.A. López-Alvarez, A.H. Martínez-Preciado, and V. Oleinikov, ECS J.Solid State Sci. Techol. 8, Q9.
    • α-Ga2O3 as a Photocatalyst in the Degradation of Malachite Green, C.I. Macías Rodríguez, M.A. López-Álvarez, J.J. Flores Rivera, et al, ECS J.Solid State Sci. Techol. 8, Q3.
    • Novel UV Sensing and Photocatalytic Properties of DyCoO3, C.R. Michel, M.A. López-Álvarez, M.H. Martínez-Preciado, and G.G. Carbajal-Arízaga, Journal of Sensors 2019, 5682645.
  • 2018

    • Pulsed laser deposition of zinc vanadates from a ZnV2O6 target, J.G. Quiñones-Galván. R. Lozada-Morales, E. Camps, and M.A. Santana Aranda, J. Laser Applications 30, 012007.
    • Synthesis of colloidal silicon and germanium nanoparticles by laser ablation of solid Si and Ge targets in ethanol, J.A. Serrano-Ruz, E. Campos-González, J. Santoyo-Salazar et al., Mater. Res. Express 5, 015038.
    • Effect of the combination of Cu and CdTe plasmas on the structural and optical properties of CdTe:Cu thin films deposited by laser ablation, S. Saracho-González, A. Pérez-Centeno, M.A. Santana-Aranda et al., Materials Science in Semiconductor Processing 87, 7-12.
    • Effect of the Cu plasma density on ZnO:Cu thin films grown by PLD, J.A. Guerrero de León, J.G. Quiñones-Galván, A. Pérez-Centeno, G. Gómez-Rosas, E. Camps, and M.A. Santana-Aranda, Mat. Res. Express 5, 066417.
    • A Comparative Study of Gold Impregnation Methods for Obtaining Metal/Semiconductor Nanophotocatalysts: Direct Turkevich, Inverse Turkevich, and Progressive Heating Methods, M. Mataoros-Ambrocio, M. L Ruiz-Peralta, Ernesto Chigo-Anota et al., Catalysts 8, 161.
  • 2017

    • Simple Route to Obtain Nanostructured CeO2 Microspheres and CO Gas Sensing Performance, E.R. López-Mena, C.R. Michel, A.H. Martínez-Preciado, and A. Elías-Zúñiga, Nanoscale Res. Lett. 12, 169.
    • Improvement of the gas sensing response of nanostructured LaCoO3 by the addition of Ag nanoparticles, C.R. Michel, A.H. Martínez-Preciado, E.R. López-Mena et al, Sens. Actuat. B: Chem. 246, 181-189.
    • From metallic gold to [Au(NHC)2]+ complexes: an easy, one-pot method, L. Lozada- Rodríguez, J.B. Pelayo-Vázquez, I.I. Rangel-Salas et al, Dalton Trans. 46, 3809-3811.
  • 2016

    • Response to environmental gases of BaCoO3 nanowires prepared by a microwave-assisted colloidal method, C.R. Michel, A.H. Martínez-Preciado, C.D. Rivera-Tello, E.R. López-Mena et al, Sens. Act. B: Chem. 233, 39-46.
    • Enhanced CO2-sensing response of nanostructured cobalt aluminate synthesized using a microwave-assisted colloidal method, J.P. Morán-Lázaro, O. Blanco, V.M. Rodríguez-Betancourtt et al, Sens. Act. B: Chem. 226, 518-524.
    • Silver Nanoparticles by Laser Ablation Confined in Alcohol Using an Argon Gas Environment, D.O. Oseguera Galindo, O. Hernández Utrera, R. Machorro Mejía, and M.A. Santana Aranda, JLMN-J. Laser Micro/Nanoengineering 11, 158-163.
    • Antibacterial activity of nanoparticles of titanium dioxide, intrinsic and doped with indium and iron, N. Castro-Alarcón, J.L. Herrera-Arizmendi, L.R. Marroquín-Carteño et al, Microbioly Research Int. 4, 55-62.
    • Physical properties of a non-transparent cadmium oxide thick film deposited at low fluence by pulsed laser deposition, J.G. Quiñones-Galván, R. Lozada-Morales, S. Jiménez-Sandoval et al, Materials Research Bulletin 76, 376-383.
    • Dysprosium-containing layered double hydroxides nanoparticles intercalated with biologically active species as an approach fortheranostic systems, J. Arratia-Quijada, C. Sánchez Jiménez, A. Gurinov et al, Materials Science and Engineering: B 203, 7-12.
    • Preparation of Nanosized LaCoO3 through Calcination of a Hydrothermally Synthesized Precursor, L. Tepech-Carrillo, A. Escobedo-Morales, A. Pérez-Centeno et al, Journal of Nanomaterials 2016, 6917950.
    • ZnO Micro- and Nanostructures Obtained by Thermal Oxidation: Microstructure, Morphogenesis, Optical, and Photoluminescence, A. Escobedo-Morales, R.J. Aranda-García, E. Chigo-Anota et al, Crystals, 6, 135.