Enrique Diez
Overview
Explore the profile of Enrique Diez including associated specialties, affiliations and a list of published articles.
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Articles
11
Citations
17
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Recent Articles
1.
Labani M, Clerico V, Diez E, Gatti G, Amado M, Perez-Rodriguez A
Nanomaterials (Basel)
. 2024 Dec;
14(23).
PMID: 39683287
The ability to manufacture complex 3D structures with nanometer-scale resolution, such as Fresnel Zone Plates (FZPs), is crucial to achieve state-of-the-art control in X-ray sources for use in a diverse...
2.
Delgado-Notario J, Knap W, Clerico V, Salvador-Sanchez J, Calvo-Gallego J, Taniguchi T, et al.
Nanophotonics
. 2024 Dec;
11(3):519-529.
PMID: 39633800
Terahertz (THz) waves have revealed a great potential for use in various fields and for a wide range of challenging applications. High-performance detectors are, however, vital for exploitation of THz...
3.
Fernandez J, Fernandez S, Diez E, Pinilla-Alonso N, Perez S, Iglesias S, et al.
Sensors (Basel)
. 2024 Jun;
24(12).
PMID: 38931715
Lithium, a critical natural resource integral to modern technology, has influenced diverse industries since its discovery in the 1950s. Of particular interest is lithium-7, the most prevalent lithium isotope on...
4.
Clerico V, Wojcik P, Vezzosi A, Rocci M, Demontis V, Zannier V, et al.
Nano Lett
. 2024 Jan;
24(3):790-796.
PMID: 38189790
We experimentally and computationally investigate the magneto-conductance across the radial heterojunction of InAs-GaSb core-shell nanowires under a magnetic field, , up to 30 T and at temperatures in the range...
5.
Quereda J, Zhao Q, Diez E, Frisenda R, Castellanos-Gomez A
Open Res Eur
. 2023 Aug;
1:98.
PMID: 37645138
Optoelectronic device characterization requires to probe the electrical transport changes upon illumination with light of different incident powers, wavelengths, and modulation frequencies. This task is typically performed using laser-based or...
6.
Vaquero D, Clerico V, Schmitz M, Delgado-Notario J, Martin-Ramos A, Salvador-Sanchez J, et al.
Nat Commun
. 2023 Jan;
14(1):318.
PMID: 36658139
The quantum Hall (QH) effect in two-dimensional electron systems (2DESs) is conventionally observed at liquid-helium temperatures, where lattice vibrations are strongly suppressed and bulk carrier scattering is dominated by disorder....
7.
Vaquero D, Salvador-Sanchez J, Clerico V, Diez E, Quereda J
Nanomaterials (Basel)
. 2022 Feb;
12(3).
PMID: 35159666
Two-dimensional transition metal dichalcogenides (2D-TMDs) are among the most promising materials for exploring and exploiting exciton transitions. Excitons in 2D-TMDs present remarkably long lifetimes, even at room temperature. The spectral...
8.
Ionic-Liquid Gating in Two-Dimensional TMDs: The Operation Principles and Spectroscopic Capabilities
Vaquero D, Clerico V, Salvador-Sanchez J, Quereda J, Diez E, Perez-Munoz A
Micromachines (Basel)
. 2021 Dec;
12(12).
PMID: 34945426
Ionic-liquid gating (ILG) is able to enhance carrier densities well above the achievable values in traditional field-effect transistors (FETs), revealing it to be a promising technique for exploring the electronic...
9.
Vaquero D, Clerico V, Salvador-Sanchez J, Diaz E, Dominguez-Adame F, Chico L, et al.
Nanoscale
. 2021 Sep;
13(38):16156-16163.
PMID: 34543368
Two-dimensional transition metal dichalcogenide (TMD) phototransistors have been the object of intensive research during the last years due to their potential for photodetection. Photoresponse in these devices is typically caused...
10.
Martin-Garcia B, Velazquez M, Rossella F, Bellani V, Diez E, Fierro J, et al.
Chemphyschem
. 2012 Aug;
13(16):3682-90.
PMID: 22890873
Films of a few layers in thickness of reduced graphite oxide (RGO) sheets functionalized by the zwitterionic surfactant N-dodecyl-N,N-dimethyl-3-ammonio-1-propanesulfonate (DDPS) are obtained by using the Langmuir-Blodgett method. The quality of...