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Jose Maria De Teresa

Explore the profile of Jose Maria De Teresa including associated specialties, affiliations and a list of published articles. Areas
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Articles 39
Citations 255
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Recent Articles
1.
Herrer L, Salvador-Porroche A, Hlawacek G, Cea P, De Teresa J
Nanoscale . 2024 Oct; 16(45):21128-21137. PMID: 39466624
A direct nanowriting procedure using helium- and neon-focused ion beams and spin-coated organometallic thin films is introduced and applied to the fabrication of Pd-enriched metallic structures in a single lithography...
2.
Gracia-Abad R, Sangiao S, Balakrishnan G, De Teresa J
Sci Rep . 2024 Oct; 14(1):24294. PMID: 39414910
Recent advances in quantum technologies are highly influencing the current technological scenario. Hybrid devices combining superconductors and topological insulators represent an excellent opportunity to study the topological superconducting phase, which...
3.
Jungwirth F, Salvador-Porroche A, Porrati F, Jochmann N, Knez D, Huth M, et al.
J Phys Chem C Nanomater Interfaces . 2024 Mar; 128(7):2967-2977. PMID: 38444783
The investigation of precursor classes for the fabrication of nanostructures is of specific interest for maskless fabrication and direct nanoprinting. In this study, the differences in material composition depending on...
4.
Szkudlarek A, Michalik J, Serrano-Esparza I, Novacek Z, Novotna V, Ozga P, et al.
Beilstein J Nanotechnol . 2024 Feb; 15:190-198. PMID: 38352720
Graphene is one of the most extensively studied 2D materials, exhibiting extraordinary mechanical and electronic properties. Although many years have passed since its discovery, manipulating single graphene layers is still...
5.
Allen F, De Teresa J, Onoa B
ACS Appl Mater Interfaces . 2024 Jan; 16(4):4439-4448. PMID: 38244049
We demonstrate the fabrication of sharp nanopillars of high aspect ratio onto specialized atomic force microscopy (AFM) microcantilevers and their use for high-speed AFM of DNA and nucleoproteins in liquid....
6.
Orus P, Sigloch F, Sangiao S, De Teresa J
Open Res Eur . 2023 Aug; 2:102. PMID: 37645310
: The use of a focused ion beam to decompose a precursor gas and produce a metallic deposit is a widespread nanolithographic technique named focused ion beam induced deposition (FIBID)....
7.
Escalante-Quiceno A, Novotny O, Neuman J, Magen C, De Teresa J
Sensors (Basel) . 2023 Mar; 23(6). PMID: 36991589
High-resolution micro- and nanostructures can be grown using Focused Electron Beam Induced Deposition (FEBID), a direct-write, resist-free nanolithography technology which allows additive patterning, typically with sub-100 nm lateral resolution, and...
8.
Gracia-Abad R, Sangiao S, Chaluvadi S, Orgiani P, De Teresa J
Materials (Basel) . 2023 Mar; 16(6). PMID: 36984129
Focused Ion Beam patterning has become a widely applied technique in the last few decades in the micro- and nanofabrication of quantum materials, representing an important advantage in terms of...
9.
Salvador-Porroche A, Sangiao S, Magen C, Barrado M, Philipp P, Belotcerkovtceva D, et al.
Nanoscale Adv . 2022 Sep; 3(19):5656-5662. PMID: 36133267
Emergent technologies are required in the field of nanoelectronics for improved contacts and interconnects at nano and micro-scale. In this work, we report a highly-efficient nanolithography process for the growth...
10.
Salvador-Porroche A, Herrer L, Sangiao S, Philipp P, Cea P, De Teresa J
ACS Appl Mater Interfaces . 2022 Jun; 14(24):28211-28220. PMID: 35671475
Metallic nanopatterns are ubiquitous in applications that exploit the electrical conduction at the nanoscale, including interconnects, electrical nanocontacts, and small gaps between metallic pads. These metallic nanopatterns can be designed...