Követés
David C Moore
David C Moore
Research Scientist, AFRL
E-mail megerősítve itt: huskers.unl.edu
Cím
Hivatkozott rá
Hivatkozott rá
Év
Vertical organic electrochemical transistors for complementary circuits
W Huang, J Chen, Y Yao, D Zheng, X Ji, LW Feng, D Moore, NR Glavin, ...
Nature 613 (7944), 496-502, 2023
872023
2D Electrets of Ultrathin MoO2 with Apparent Piezoelectricity
A Apte, K Mozaffari, FS Samghabadi, JA Hachtel, L Chang, S Susarla, ...
Advanced Materials 32 (24), 2000006, 2020
582020
Facile post-deposition annealing of graphene ink enables ultrasensitive electrochemical detection of dopamine
D Butler, D Moore, NR Glavin, JA Robinson, A Ebrahimi
ACS Applied Materials & Interfaces 13 (9), 11185-11194, 2021
532021
Impact of self-assembled monolayer design and electrochemical factors on impedance-based biosensing
MC Brothers, D Moore, M St. Lawrence, J Harris, RM Joseph, E Ratcliff, ...
Sensors 20 (8), 2246, 2020
312020
Uncovering topographically hidden features in 2D MoSe2 with correlated potential and optical nanoprobes
D Moore, K Jo, C Nguyen, J Lou, C Muratore, D Jariwala, NR Glavin
npj 2D Materials and Applications 4 (1), 44, 2020
202020
Single electron transistor in aqueous media.
C Yu, SW Lee, J Ong, D Moore, RF Saraf
Advanced Materials (Deerfield Beach, Fla.) 25 (22), 3079-3084, 2013
192013
Ultrasensitive molecular sensors based on real‐time impedance spectroscopy in solution‐processed 2D materials
DC Moore, A Jawaid, R Busch, M Brothers, P Miesle, A Miesle, R Rao, ...
Advanced Functional Materials 32 (12), 2106830, 2022
182022
Localized electrochemistry on a 10 μm spot on a monolith large electrode: An avenue for electrochemical microarray analysis
G Singh, D Moore, RF Saraf
Analytical chemistry 81 (15), 6055-6060, 2009
172009
Laser writing of electronic circuitry in thin film molybdenum disulfide: A transformative manufacturing approach
D Austin, K Gliebe, C Muratore, B Boyer, TS Fisher, LK Beagle, A Benton, ...
Materials Today 43, 17-26, 2021
142021
Piezoelectricity across 2D phase boundaries
AB Puthirath, X Zhang, A Krishnamoorthy, R Xu, FS Samghabadi, ...
Advanced Materials 34 (39), 2206425, 2022
102022
Microwave facilitated covalent organic framework/transition metal dichalcogenide heterostructures
LK Beagle, DC Moore, G Kim, LD Tran, P Miesle, C Nguyen, Q Fang, ...
ACS Applied Materials & Interfaces 14 (41), 46876-46883, 2022
82022
Two step synthesis of ultrathin transition metal tellurides
M Snure, MJ Motala, TA Prusnick, EM Smith, D Moore, C Muratore, ...
Journal of Vacuum Science & Technology A 40 (4), 2022
72022
Laser‐Fabricated 2D Molybdenum Disulfide Electronic Sensor Arrays for Rapid, Low‐Cost, Ultrasensitive Detection of Influenza A and SARS‐Cov‐2
C Muratore, MK Muratore, DR Austin, P Miesle, AK Benton, LK Beagle, ...
Advanced Materials Interfaces 9 (18), 2102209, 2022
72022
Negative printing by soft lithography
JKY Ong, D Moore, J Kane, RF Saraf
ACS Applied Materials & Interfaces 6 (16), 14278-14285, 2014
72014
High Throughput Data-Driven Design of Laser-Crystallized 2D MoS2 Chemical Sensors: A Demonstration for NO2 Detection
D Austin, P Miesle, D Sessions, M Motala, DC Moore, G Beyer, A Miesle, ...
ACS Applied Nano Materials 5 (5), 7549-7561, 2022
62022
Precision Modification of Monolayer Transition Metal Dichalcogenides via Environmental E-Beam Patterning
R Selhorst, Z Yu, D Moore, J Jiang, MA Susner, NR Glavin, R Pachter, ...
ACS nano 17 (3), 2958-2967, 2023
42023
Effective Optical Properties of Laterally Coalescing Monolayer MoS2
RT Busch, R Torsi, A Drees, D Moore, A Sarangan, NR Glavin, ...
The Journal of Physical Chemistry Letters 13 (25), 5808-5814, 2022
42022
Synthesis of two-dimensional van der waals superlattices, heterostructures, and alloys from conversion of sequentially layered sub-nanometer metal films
MJ Motala, X Zhang, P Kumar, EF Oliveira, A Benton, P Miesle, R Rao, ...
Materials Today Nano 22, 100319, 2023
32023
Selective vapor sensors with thin-film MoS2-coated optical fibers
M Motala, LK Beagle, J Lynch, DC Moore, PR Stevenson, A Benton, ...
Journal of Vacuum Science & Technology A 40 (3), 2022
32022
Electrochemical deposition of polyelectrolytes is maximum at the potential of zero charge
D Moore, JA Arcila, RF Saraf
Langmuir 36 (8), 1864-1870, 2020
32020
A rendszer jelenleg nem tudja elvégezni a műveletet. Próbálkozzon újra később.
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