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Jose A Marquez

Explore the profile of Jose A Marquez including associated specialties, affiliations and a list of published articles. Areas
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Articles 35
Citations 854
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Recent Articles
1.
Schilling-Wilhelmi M, Rios-Garcia M, Shabih S, Gil M, Miret S, Koch C, et al.
Chem Soc Rev . 2024 Dec; 54(3):1125-1150. PMID: 39703015
The vast majority of chemical knowledge exists in unstructured natural language, yet structured data is crucial for innovative and systematic materials design. Traditionally, the field has relied on manual curation...
2.
Kotov V, Killer M, Jungnickel K, Lei J, Finocchio G, Steinke J, et al.
Cell Rep . 2023 Jul; 42(8):112831. PMID: 37467108
Proton-dependent oligopeptide transporters (POTs) are promiscuous transporters of the major facilitator superfamily that constitute the main route of entry for a wide range of dietary peptides and orally administrated peptidomimetic...
3.
Di Micco S, Rahimova R, Sala M, Scala M, Vivenzio G, Musella S, et al.
Eur J Med Chem . 2022 Nov; 244:114857. PMID: 36332548
Although vaccines are greatly mitigating the worldwide pandemic diffusion of SARS-Cov-2, therapeutics should provide many distinct advantages as complementary approach to control the viral spreading. Here, we report the development...
4.
Xu K, Al-Ashouri A, Peng Z, Kohnen E, Hempel H, Akhundova F, et al.
ACS Energy Lett . 2022 Oct; 7(10):3600-3611. PMID: 36277135
Wide bandgap halide perovskite materials show promising potential to pair with silicon bottom cells. To date, most efficient wide bandgap perovskites layers are fabricated by spin-coating, which is difficult to...
5.
Wieliczka B, Marquez J, Bothwell A, Zhao Q, Moot T, VanSant K, et al.
ACS Nano . 2021 Dec; 15(12):19334-19344. PMID: 34859993
Perovskite quantum dots (PQDs) have many properties that make them attractive for optoelectronic applications, including expanded compositional tunability and crystallographic stabilization. While they have not achieved the same photovoltaic (PV)...
6.
Krause M, Nikolaeva A, Maiberg M, Jackson P, Hariskos D, Witte W, et al.
Nat Commun . 2021 May; 12(1):3200. PMID: 34021157
No abstract available.
7.
Cabas-Vidani A, Choubrac L, Marquez J, Unold T, Maiberg M, Scheer R, et al.
ACS Appl Mater Interfaces . 2021 Apr; 13(16):19487-19496. PMID: 33870689
The rear interface of kesterite absorbers with Mo back contact represents one of the possible sources of nonradiative voltage losses (Δ) because of the reported decomposition reactions, an uncontrolled growth...
8.
Dagar J, Fenske M, Al-Ashouri A, Schultz C, Li B, Kobler H, et al.
ACS Appl Mater Interfaces . 2021 Mar; 13(11):13022-13033. PMID: 33721995
Through the optimization of the perovskite precursor composition and interfaces to selective contacts, we achieved a p-i-n-type perovskite solar cell (PSC) with a 22.3% power conversion efficiency (PCE). This is...
9.
Marquez J, Rusu M, Hempel H, Ahmet I, Kolbach M, Simsek I, et al.
J Phys Chem Lett . 2021 Feb; 12(8):2148-2153. PMID: 33625854
The earth-abundant ternary compound BaZrS, which crystallizes in the perovskite-type structure, has come into view as a promising candidate for photovoltaic applications. We present the synthesis and characterization of polycrystalline...
10.
Ruiz L, Kaczmarska Z, Gomes T, Aragon E, Torner C, Freier R, et al.
Comput Struct Biotechnol J . 2021 Jan; 19:632-646. PMID: 33510867
Smad transcription factors are the main downstream effectors of the Transforming growth factor β superfamily (TGFβ) signalling network. The DNA complexes determined here by X-ray crystallography for the Bone Morphogenetic...