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Alice Castan

Explore the profile of Alice Castan including associated specialties, affiliations and a list of published articles. Areas
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Articles 7
Citations 13
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Recent Articles
1.
Chou Y, Lin C, Castan A, Chen J, Keneipp R, Yasini P, et al.
Nat Nanotechnol . 2024 Aug; 19(11):1686-1692. PMID: 39143316
Rapid sensing of molecules is increasingly important in many studies and applications, such as DNA sequencing and protein identification. Here, beyond atomically thin 2D nanopores, we conceptualize, simulate and experimentally...
2.
Friedensen S, Yasini P, Keneipp R, Castan A, Drndic M
ACS Omega . 2022 Nov; 7(46):42146-42154. PMID: 36440127
Recently discovered two-dimensional ferromagnetic materials (2DFMs) have rapidly gained much interest in the fields of spintronics and computing, where they may prove powerful tools for miniaturizing devices such as magnetic...
3.
Forel S, Sacco L, Castan A, Florea I, Cojocaru C
Nanoscale Adv . 2022 Sep; 3(6):1582-1587. PMID: 36132564
Single-walled carbon nanotubes (SWCNTs) are promising candidates for gas sensing applications, providing an efficient solution to the device miniaturization challenge and allowing low power consumption. SWCNT gas sensors are mainly...
4.
Niedzwiecki D, DiPaolo B, Lin C, Castan A, Keneipp R, Monos D, et al.
ACS Sens . 2021 Oct; 6(11):4265. PMID: 34651498
No abstract available.
5.
Niedzwiecki D, DiPaolo B, Lin C, Castan A, Keneipp R, Drndic M
ACS Sens . 2021 Jul; 6(7):2534-2545. PMID: 34228425
We fabricate on-chip solid-state nanofluidic-2D nanopore systems that can limit the range of motion for DNA in the sensing region of a nanopore. We do so by creating devices containing...
6.
Forel S, Castan A, Amara H, Florea I, Fossard F, Catala L, et al.
Nanoscale . 2019 Feb; 11(9):4091-4100. PMID: 30785462
Recent advances in structural control during the synthesis of SWCNTs have in common the use of bimetallic nanoparticles as catalysts, despite the fact that their exact role is not fully...
7.
Castan A, Kim H, Jang J
ACS Appl Mater Interfaces . 2014 Jan; 6(4):2508-15. PMID: 24467416
Quantum dots are a promising new candidate for the emissive material in light-emitting devices for display applications. The fabrication of such devices by solution processing allows considerable cost reduction and...