Patricia de la Presa
Overview
Explore the profile of Patricia de la Presa including associated specialties, affiliations and a list of published articles.
Author names and details appear as published. Due to indexing inconsistencies, multiple individuals may share a name, and a single author may have variations. MedLuna displays this data as publicly available, without modification or verification
Snapshot
Snapshot
Articles
25
Citations
140
Followers
0
Related Specialties
Related Specialties
Top 10 Co-Authors
Top 10 Co-Authors
Published In
Affiliations
Affiliations
Soon will be listed here.
Recent Articles
1.
Gutierrez F, Souza Lima I, De Falco A, Ereias B, Baffa O, Diego de Abreu Lima C, et al.
Heliyon
. 2024 Feb;
10(4):e25781.
PMID: 38390158
Magnetic nanoparticles, such as magnetite (FeO), exhibit superparamagnetic properties below 15 nm at room temperature. They are being explored for medical applications, and the coprecipitation technique is preferred for cost-effective...
2.
Alshalawi D, Alonso J, Landa-Canovas A, de la Presa P
Nanomaterials (Basel)
. 2023 May;
13(10).
PMID: 37242073
In this work, we have studied structural and magnetic properties of LaFeO as a function of the particle size , from bulk ( >> 1 µm) to nanoscale ( ≈...
3.
Mbarek F, Cherif I, Cherif A, Alonso J, Morales I, de la Presa P, et al.
Materials (Basel)
. 2023 May;
16(9).
PMID: 37176307
The present study aims at the integration of the "oxalic conversion" route into "green chemistry" for the synthesis of copper oxide nanoparticles (CuO-NPs) with controllable structural, morphological, and magnetic properties....
4.
Zdiri F, Alonso J, Mnasri T, de la Presa P, Morales I, Luis Martinez J, et al.
Materials (Basel)
. 2023 Feb;
16(4).
PMID: 36837202
We have investigated the structural, magnetic, and electrical transport properties of Pr Sr MnCo O nanopowders (x = 0, 0.05, 0.10 and 0.15). The Pechini Sol-gel method was used to...
5.
Arranz D, Weigand R, de la Presa P
Nanomaterials (Basel)
. 2023 Feb;
13(3).
PMID: 36770411
A systematic study on laser-induced heating carried out in two biological windows (800 nm and 1053 nm) for FeO nanoparticles in water suspension showed evidence of the strong dependence of...
6.
Pena A, Aguilera J, Matatagui D, de la Presa P, Horrillo C, Hernando A, et al.
Biosensors (Basel)
. 2022 Oct;
12(10).
PMID: 36291006
In the quest for effective gas sensors for breath analysis, magnetoelastic resonance-based gas sensors (MEGSs) are remarkable candidates. Thanks to their intrinsic contactless operation, they can be used as non-invasive...
7.
Alshalawi D, Alonso J, Landa-Canovas A, de la Presa P
Inorg Chem
. 2022 Oct;
61(41):16228-16238.
PMID: 36191153
Kagome antiferromagnetic lattices are of high interest because the geometric frustration is expected to give rise to highly degenerated ground states that may host exotic properties such as quantum spin...
8.
Morales I, Costo R, Mille N, Carrey J, Hernando A, de la Presa P
Nanoscale Adv
. 2022 Sep;
3(20):5801-5812.
PMID: 36132668
Magnetite nanoparticles (MNPs) with 12, 34 and 53 nm sizes have been measured by AC-magnetometry at 50 kHz and 57 mT maximum applied field. The MNPs form chains under the...
9.
Fernandez-Gonzalez C, Guedeja-Marron A, Rodilla B, Arche-Nunez A, Corcuera R, Lucas I, et al.
Nanomaterials (Basel)
. 2022 Jul;
12(15).
PMID: 35893533
In the last few years, magnetic nanowires have gained attention due to their potential implementation as building blocks in spintronics applications and, in particular, in domain-wall- based devices. In these...
10.
Hernando A, Cobos M, Jimenez J, Llorente I, Garcia-Escorial A, de la Presa P
Materials (Basel)
. 2022 Jul;
15(14).
PMID: 35888256
Different studies carried out in the last three decades on the magnetic susceptibility of the spinel ZnFeO ferrite have revealed the positive character of its Curie-Weiss temperature, contradicting its observed...