M D Barnes
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Explore the profile of M D Barnes including associated specialties, affiliations and a list of published articles.
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Articles
33
Citations
141
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Recent Articles
1.
Dockx K, Barnes M, Wehenkel D, van Rijn R, van der Zant H, Buscema M
Nanotechnology
. 2024 Jul;
35(39).
PMID: 38955146
We present the electrical characterization of wafer-scale graphene devices fabricated with an industrially-relevant, contact-first integration scheme combined with AlOencapsulation via atomic layer deposition. All the devices show a statistically significant...
2.
Alsenani T, Viviani S, Kumar V, Taracila M, Bethel C, Barnes M, et al.
Antimicrob Agents Chemother
. 2022 Mar;
66(4):e0241421.
PMID: 35341315
Klebsiella pneumoniae carbapenemases (KPC-2 and KPC-3) present a global clinical threat, as these β-lactamases confer resistance to carbapenems and oxyimino-cephalosporins. Recent clinically identified KPC variants with substitutions at Ambler position...
3.
Peimyoo N, Barnes M, Mehew J, De Sanctis A, Amit I, Escolar J, et al.
Sci Adv
. 2019 Feb;
5(1):eaau0906.
PMID: 30746444
Similar to silicon-based semiconductor devices, van der Waals heterostructures require integration with high- oxides. Here, we demonstrate a method to embed and pattern a multifunctional few-nanometer-thick high- oxide within various...
4.
De Sanctis A, Russo S, Craciun M, Alexeev A, Barnes M, Nagareddy V, et al.
Interface Focus
. 2018 Apr;
8(3):20170057.
PMID: 29696089
Graphene-based materials are being widely explored for a range of biomedical applications, from targeted drug delivery to biosensing, bioimaging and use for antibacterial treatments, to name but a few. In...
5.
Labastide J, Thompson H, Marques S, Colella N, Briseno A, Barnes M
Nat Commun
. 2016 Feb;
7:10629.
PMID: 26912040
One of the fundamental design paradigms in organic photovoltaic device engineering is based on the idea that charge separation is an extrinsically driven process requiring an interface for exciton fission....
6.
Wise A, Zhang Y, Fan J, Wudl F, Briseno A, Barnes M
Phys Chem Chem Phys
. 2014 Mar;
16(30):15825-30.
PMID: 24676385
Recent synthetic work has realized a novel (n-type) small-molecule acceptor, 7,8,15,16-tetra-aza-terrylene (TAT), single-crystals of which can be grown oriented along the c-axis crystallographic direction, and over-coated with pentacene to form...
7.
Craciun M, Khrapach I, Barnes M, Russo S
J Phys Condens Matter
. 2013 Sep;
25(42):423201.
PMID: 24045655
The vast and yet largely unexplored family of graphene materials has great potential for future electronic devices with novel functionalities. The ability to engineer the electrical and optical properties in...
8.
Early K, McCarthy K, Hammer N, Odoi M, Tangirala R, Emrick T, et al.
Nanotechnology
. 2011 Jul;
18(42):424027.
PMID: 21730460
We report time-resolved single molecule fluorescence imaging of individual CdSe quantum dots that are functionalized with oligomeric conjugated organic ligands. The fluorescence intensity trajectories from these composite nanostructures display both...
9.
Kung C, Barnes M, Lermer N, Whitten W, Ramsey J
Anal Chem
. 2011 Jun;
70(3):658-61.
PMID: 21644763
We report observation of fluorescence from individual rhodamine 6G molecules in streams of charged 1-μm-diameter water droplets. With this approach, illumination volumes comparable to diffraction-limited fluorescence microscopy techniques (≤500 aL)...
10.
Lermer N, Barnes M, Kung C, Whitten W, Ramsey J
Anal Chem
. 2011 Jun;
69(11):2115-21.
PMID: 21639255
We report fluorescence detection of individual rhodamine 6G molecules using a linear quadrupole to focus streams of microdroplets through the waist of a counterpropagating cw Ar(+) laser. Since the terminal...