» Authors » Erik J Luber

Erik J Luber

Explore the profile of Erik J Luber including associated specialties, affiliations and a list of published articles. Areas
Snapshot
Articles 21
Citations 107
Followers 0
Related Specialties
Top 10 Co-Authors
Published In
Affiliations
Soon will be listed here.
Recent Articles
1.
Ginige G, Song Y, Olsen B, Luber E, Yavuz C, Buriak J
ACS Appl Mater Interfaces . 2021 Jun; 13(24):28639-28649. PMID: 34100583
Self-assembly of block copolymers (BCPs) is an alternative patterning technique that promises high resolution and density multiplication with lower costs. The defectivity of the resulting nanopatterns remains too high for...
2.
Almadhoun M, Speckbacher M, Olsen B, Luber E, Sayed S, Tornow M, et al.
Nano Lett . 2021 Mar; 21(6):2666-2674. PMID: 33689381
In this work, native GaO is positioned between bulk gallium and degenerately doped p-type silicon (p-Si) to form Ga/GaO/SiO/p-Si junctions. These junctions show memristive behavior, exhibiting large current-voltage hysteresis. When...
3.
Baez Bolivar E, Bui D, Kitova E, Han L, Zheng R, Luber E, et al.
Anal Chem . 2021 Feb; 93(9):4231-4239. PMID: 33630563
Interactions between carbohydrates (glycans) and glycan-binding proteins (GBPs) regulate a wide variety of important biological processes. However, the affinities of most monovalent glycan-GBP complexes are typically weak (dissociation constant ()...
4.
Kirkey A, Luber E, Cao B, Olsen B, Buriak J
ACS Appl Mater Interfaces . 2020 Nov; 12(49):54596-54607. PMID: 33226763
All-small-molecule organic photovoltaic (OPV) cells based upon the small-molecule donor, DRCN5T, and nonfullerene acceptors, ITIC, IT-M, and IT-4F, were optimized using Design of Experiments (DOE) and machine learning (ML) approaches....
5.
Jin C, Olsen B, Luber E, Buriak J
ACS Nano . 2020 Sep; 14(10):13441-13450. PMID: 32931263
Interfaces comprising incommensurate or twisted hexagonal lattices are ubiquitous and of great interest, from adsorbed organic/inorganic interfaces in electronic devices, to superlubricants, and more recently to van der Waals bilayer...
6.
Wang H, Sayed S, Zhou Y, Olsen B, Luber E, Buriak J
Chem Commun (Camb) . 2020 Mar; 56(25):3605-3608. PMID: 32186551
A water soluble octahedral Co(ii) complex, BCPIP-Co(ii), with 4 appended carboxylic groups on the ligand periphery is utilized as both posolyte and negolyte in an aqueous, symmetric redox flow battery...
7.
Wang H, Sayed S, Luber E, Olsen B, Shirurkar S, Venkatakrishnan S, et al.
ACS Nano . 2020 Mar; 14(3):2575-2584. PMID: 32180396
Redox flow batteries (RFBs) are promising energy storage candidates for grid deployment of intermittent renewable energy sources such as wind power and solar energy. Various new redox-active materials have been...
8.
Cao B, Adutwum L, Oliynyk A, Luber E, Olsen B, Mar A, et al.
ACS Nano . 2018 Jul; 12(8):7434-7444. PMID: 30027732
Most discoveries in materials science have been made empirically, typically through one-variable-at-a-time (Edisonian) experimentation. The characteristics of materials-based systems are, however, neither simple nor uncorrelated. In a device such as...
9.
Fetterly C, Olsen B, Luber E, Buriak J
Langmuir . 2018 Apr; 34(16):4780-4792. PMID: 29614858
Electron beam lithography (EBL) is a highly precise, serial method for patterning surfaces. Positive tone EBL resists enable patterned exposure of the underlying surface, which can be subsequently functionalized for...
10.
Cao B, He X, Sorge J, Lalany A, Ahadi K, Afshar A, et al.
ACS Appl Mater Interfaces . 2017 Oct; 9(44):38706-38715. PMID: 29022714
Organic solar cells (OSCs) are a complex assembly of disparate materials, each with a precise function within the device. Typically, the electrodes are flat, and the device is fabricated through...