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Jason B Baxter

Explore the profile of Jason B Baxter including associated specialties, affiliations and a list of published articles. Areas
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Articles 17
Citations 125
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Recent Articles
1.
Fai C, Ladd A, Hages C, Manoukian G, Baxter J
iScience . 2025 Feb; 28(2):111850. PMID: 39995870
We describe an improved Bayesian inference methodology to characterize photovoltaic materials by matching charge carrier simulations to spectroscopy data. A "parallel tempering" scheme is introduced, which efficiently and reliably locates...
2.
Hossain M, Starger J, Efymow J, Barrett R, Bolduc J, Alvarez N, et al.
Langmuir . 2024 Apr; 40(17):8836-8842. PMID: 38634602
Halide perovskite thin films can be the centerpiece of high-performance solar cells, light-emitting diodes, and other optoelectronic devices if the films are of high uniformity and relatively free of pinholes...
3.
Starger J, Fafarman A, Baxter J, Alvarez N, Cairncross R
Langmuir . 2023 Nov; 39(46):16231-16243. PMID: 37939230
The microstructure of solid coatings produced by solution processing is highly dependent on the coupling between growth, solute diffusion, and solvent evaporation. Here, a quasi-2D numerical model coupling drying and...
4.
Khalifa S, Spatari S, Fafarman A, Fthenakis V, Gurian P, Olson M, et al.
Environ Sci Technol . 2023 Mar; 57(13):5190-5202. PMID: 36966415
Emerging lead halide perovskite (LHP) photovoltaics are undergoing intense research and development due to their outstanding efficiency and potential for low manufacturing costs that render them competitive with existing photovoltaic...
5.
Manoukian G, Kizilkaya O, Lendinez S, Manuel L, Leite T, Shirali K, et al.
J Chem Phys . 2022 Nov; 157(17):174702. PMID: 36347709
Noble-transition metal alloys offer emergent optical and electronic properties for near-infrared (NIR) optoelectronic devices. We investigate the optical and electronic properties of CuPd alloy thin films and their ultrafast electron...
6.
Elbert K, Taheri M, Gogotsi N, Park J, Baxter J, Murray C
Nanoscale Horiz . 2020 Oct; 5(11):1509-1514. PMID: 33103695
Investigation of charge transfer in quantum dot (QD) systems is an area of great interest. Specifically, the relationship between capping ligand and rate of charge transfer has been studied as...
7.
Stofela S, Kizilkaya O, Diroll B, Leite T, Taheri M, Willis D, et al.
Adv Mater . 2020 Apr; 32(23):e1906478. PMID: 32347620
Above-equilibrium "hot"-carrier generation in metals is a promising route to convert photons into electrical charge for efficient near-infrared optoelectronics. However, metals that offer both hot-carrier generation in the near-infrared and...
8.
Willis D, Taheri M, Kizilkaya O, Leite T, Zhang L, Ofoegbuna T, et al.
ACS Appl Mater Interfaces . 2020 Apr; 12(20):22778-22788. PMID: 32338494
Devices driven by above-equilibrium "hot" electrons are appealing for photocatalytic technologies, such as in situ HO synthesis, but currently suffer from low (<1%) overall quantum efficiencies. Gold nanostructures excited by...
9.
Yun H, Paik T, Diroll B, Edley M, Baxter J, Murray C
ACS Appl Mater Interfaces . 2016 May; 8(23):14692-700. PMID: 27224958
Light absorption and electron injection are important criteria determining solar energy conversion efficiency. In this research, monodisperse CdSe quantum dots (QDs) are synthesized with five different diameters, and the size-dependent...
10.
Cargnello M, Montini T, Smolin S, Priebe J, Delgado Jaen J, Doan-Nguyen V, et al.
Proc Natl Acad Sci U S A . 2016 Apr; 113(15):3966-71. PMID: 27035977
Photocatalytic pathways could prove crucial to the sustainable production of fuels and chemicals required for a carbon-neutral society. Electron-hole recombination is a critical problem that has, so far, limited the...