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Camilo A Mesa

Explore the profile of Camilo A Mesa including associated specialties, affiliations and a list of published articles. Areas
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Articles 22
Citations 255
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Recent Articles
1.
Garces-Pineda F, Yu J, Mesa C, Plana-Ruiz S, Ruano D, Liang Y, et al.
Chem Sci . 2025 Mar; PMID: 40083968
Electrolytic hydrogen is identified as a crucial component in the desired decarbonisation of the chemical industry, utilizing renewable energy to split water into hydrogen and oxygen. Water electrolysis still requires...
2.
Robles C, Montanes L, Mesa C, Iglesias D, Rabelo H, Spadaro M, et al.
ChemSusChem . 2025 Feb; :e202402583. PMID: 39907173
Cost-effective and efficient photoelectrochemical (PEC) water splitting stands out as one of the most promising strategies to address sustainable energy supply in the form of green H. Large-area photoelectrodes featuring...
3.
Silva I, Pulignani C, Odutola J, Galushchinskiy A, Teixeira I, Isaacs M, et al.
J Colloid Interface Sci . 2024 Sep; 678(Pt B):518-533. PMID: 39260300
Visible-light responsive, stable, and abundant absorbers are required for the rapid integration of green, clean, and renewable technologies in a circular economy. Photoactive solid-solid heterojunctions enable multiple charge pathways, inhibiting...
4.
Ram R, Xia L, Benzidi H, Guha A, Golovanova V, Garzon Manjon A, et al.
Science . 2024 Jun; 384(6702):1373-1380. PMID: 38900890
The oxygen evolution reaction is the bottleneck to energy-efficient water-based electrolysis for the production of hydrogen and other solar fuels. In proton exchange membrane water electrolysis (PEMWE), precious metals have...
5.
Mesa C, Sachs M, Pastor E, Gauriot N, Merryweather A, Gomez-Gonzalez M, et al.
Nat Commun . 2024 May; 15(1):3908. PMID: 38724495
Photo(electro)catalysts use sunlight to drive chemical reactions such as water splitting. A major factor limiting photocatalyst development is physicochemical heterogeneity which leads to spatially dependent reactivity. To link structure and...
6.
Nomellini C, Polo A, Mesa C, Pastor E, Marra G, Grigioni I, et al.
ACS Appl Mater Interfaces . 2023 Nov; PMID: 37921705
WO/BiVO heterojunction photoanodes can be efficiently employed in photoelectrochemical (PEC) cells for the conversion of water into molecular oxygen, the kinetic bottleneck of water splitting. Composite WO/BiVO photoelectrodes possessing a...
7.
Lee S, Serafini P, Masi S, Gualdron-Reyes A, Mesa C, Rodriguez-Pereira J, et al.
ACS Energy Lett . 2023 Oct; 8(10):4488-4495. PMID: 37854043
Recently, halide perovskites have been widely explored for high-efficiency photocatalysis or photoelectrochemical (PEC) cells. Here, in order to make an efficient photoanode electrode for the degradation of pollutants, concretely 2-mercaptobenzothiazole...
8.
Fernandez-Climent R, Redondo J, Garcia-Tecedor M, Spadaro M, Li J, Chartrand D, et al.
ACS Catal . 2023 Aug; 13(15):10457-10467. PMID: 37564127
Copper-based hydrogen evolution electrocatalysts are promising materials to scale-up hydrogen production due to their reported high current densities; however, electrode durability remains a challenge. Here, we report a facile, cost-effective,...
9.
Pulignani C, Mesa C, Hillman S, Uekert T, Gimenez S, Durrant J, et al.
Angew Chem Int Ed Engl . 2022 Oct; 61(50):e202211587. PMID: 36224107
Carbon nitride (CN ) is a light-absorber with excellent performance in photocatalytic suspension systems, but the activity of CN photoelectrodes has remained low. Here, cyanamide-functionalized CN ( CN ) was...
10.
Pastor E, Montanes L, Gutierrez-Blanco A, Hegner F, Mesa C, Lopez N, et al.
Nanoscale . 2022 Sep; 14(42):15596-15606. PMID: 36148901
Photoelectrochemistry has the potential to play a crucial role in the storage of solar energy and the realisation of a circular economy. From a chemical viewpoint, achieving high conversion efficiencies...