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Francisco M Espinosa
Francisco M Espinosa
Instituto de Ciencia de Materiales de Madrid, CSIC.
Verified email at csic.es
Title
Cited by
Cited by
Year
Direct fabrication of thin layer MoS2 field-effect nanoscale transistors by oxidation scanning probe lithography
FM Espinosa, YK Ryu, K Marinov, D Dumcenco, A Kis, R Garcia
Applied Physics Letters 106 (10), 2015
662015
In situ nanomechanical characterization of the early stages of swelling and degradation of a biodegradable polymer
AC Dumitru, FM Espinosa, R Garcia, G Foschi, S Tortorella, F Valle, ...
Nanoscale 7 (12), 5403-5410, 2015
272015
The viscoelasticity of adherent cells follows a single power-law with distinct local variations within a single cell and across cell lines
JG Sanchez, FM Espinosa, R Miguez, R Garcia
Nanoscale 13 (38), 16339-16348, 2021
222021
Angstrom-resolved metal-organic framework-liquid interfaces
S Chiodini, D Reinares-Fisac, FM Espinosa, E Gutiérrez-Puebla, A Monge, ...
Scientific Reports 7 (1), 11088, 2017
172017
Sub-10 nm patterning of few-layer MoS2 and MoSe2 nanolectronic devices by oxidation scanning probe lithography
YK Ryu, AI Dago, Y He, FM Espinosa, E López-Elvira, C Munuera, ...
Applied Surface Science 539, 148231, 2021
162021
Identifying the nature of surface chemical modification for directed self-assembly of block copolymers
L Evangelio, F Gramazio, M Lorenzoni, M Gorgoi, FM Espinosa, R García, ...
Beilstein journal of nanotechnology 8 (1), 1972-1981, 2017
72017
Cell response to extracellular matrix energy dissipation outweighs rigidity sensing
C Huerta-López, A Clemente-Manteca, D Velázquez-Carreras, ...
BioRxiv, 2022.11. 16.516826, 2022
42022
A new experimental method to obtain the ion beam profile of focused ion beam nanotechnology systems
J Anguita, R Alvaro, F Espinosa
International Journal of Mechanical Engineering and Mechatronics 1 (2), 61-65, 2012
42012
Molecular Recognition by Silicon Nanowire Field-Effect Transistor and Single-Molecule Force Spectroscopy
FM Espinosa, MR Uhlig, R Garcia
Micromachines 13 (1), 97, 2022
22022
Hybrid hydrogels support neural cell culture development under magnetic actuation at high frequency
J Martínez-Ramírez, M Toldos-Torres, E Benayas, N Villar-Gómez, ...
Acta Biomaterialia 176, 156-172, 2024
12024
Cell response to substrate energy dissipation outweighs rigidity sensing
J Alegre-Cebollada, C Huerta-Lopez, A Clemente-Manteca, ...
Biophysical Journal 122 (3), 292a, 2023
12023
Intramolecular crosslinks in titin-advanced glycation end products stiffen cardiomyocytes
A Bak, AC Dumitru, D Velázquez-Carreras, MR Pricolo, I Martínez-Martín, ...
Biophysical Journal 123 (3), 269a, 2024
2024
Nanorheology and Nanoindentation Revealed a Softeningand an Increased Viscous Fluidity of Adherent Mammalian Cells upon Increasing the Frequency
VG Gisbert, FM Espinosa, JG Sánchez, MC Serrano, R García García
Wiley-VCH, 2023
2023
Understanding the relationship between mechanical and morphological changes in cells subjected to vibrational stimulation
O Johnson-Love, P Campsie, F Espinosa, R Garcia, MJ Dalby, S Reid, ...
Physics of Life 2023, 2023
2023
Changes of nuclear and cellular properties following nanovibration of 3T3 fibroblastic cells
O Johnson-Love, P Campsie, S Reid, F Espinosa, R Garcia, M Dalby, ...
Future Investigators of Regenerative Medicine, 2022
2022
The viscoelasticity of adherent cells follows a single power-law with distinct local variations within a single cell and across cell lines
J García-Sánchez, FM Espinosa, R Miguez, R García García
Royal Society of Chemistry (UK), 2021
2021
Focused Ion Beam Fabricated Magnetic Antidot Arrays: Magnetic Structure Dependence On Lattice Symmetry
A Kaidatzis, R Pérez del Real, FM Espinosa, R Álvaro Bruna, JV Anguita, ...
2013
Neural Culture Development on Magnetic Hydrogels is Preserved Under High-Frequency Magnetic Stimulation
J Martínez-Ramírez, M Toldos-Torres, E Benayas, N Villar, ...
Available at SSRN 4617308, 0
Direct Fabrication of Thin Layer Mos2 Field-Effect Nanoscale Transistors
FM Espinosa, YK Ryu, K Marinov, D Dumcenco, A Kis, R Garcia
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Articles 1–19