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Low‑temperature coating of Mn2O3– MoS2 micro‑nano‑heterostructure anode as an efficient catalyst for water splitting applications

Research Abstract

Binder-free Mn2O3–MoS2 hybrid composites (HCs) were fabricated using a room-temperature kinetic spray process under low-pressure conditions with various weight ratios of Mn2O3–MoS2 (1:1, 1:2, and 1:4). The effect of the composition ratio on the electrocatalytic activity of Mn2O3–MoS2 HCs toward the oxygen evolution reaction (OER) in an alkaline medium was investigated. The deposited MoS2 exhibits microrods (MRs) morphology, while pure Mn2O3 exhibits nanoflakes (NFs) morphology. The Mn2O3–MoS2 HCs exhibited NFs-decorated MR morphology. Multilayer heterostructure morphology significantly improves the interfacial synergy between various electroactive species that were verified using various spectroscopic techniques such as micro-Raman and X-ray photoemission spectra. As the MoS2 content in the Mn2O3–MoS2 HCs increased, the
interfacial charge transfer kinetics associated with the reduction in the oxidation barrier potential improved. The Mn2O3–MoS2 HCs with a 1:4 ratio demonstrated the optimum combination for OER with the smallest overpotential of 290 mV @10 mA cm−2 and Tafel slope of 41 mV dec−1. The long-term OER stability of the fabricated electrocatalysts was verified using chronopotentiometry techniques for 50 h at 50 mA cm−2

Research Authors
A. G. Abd‑Elrahim, Deepto Roy, Muhammad Shehroze Malik, and Doo‑Man Chun
Research Date
Research Department
Research Journal
Journal of Materials Science
Research Pages
7332-7355
Research Publisher
Springer
Research Rank
International Journal
Research Vol
59
Research Website
https://doi.org/10.1007/s10853-024-09620-6
Research Year
2024

Response of the calcareous nannofossils to the Cretaceous-Paleogene boundary event: A case study from Sinai, Egypt

Research Abstract

A detailed study of calcareous nannofossils was conducted on a well-exposed succession encompassing the Cretaceous-Paleogene (K-Pg) boundary interval at Wadi Nukhul, Sinai, Egypt, as a part of the southern Tethyan margin. The nannofossil biostratigraphic data show that the Nukhul succession sustains a complete K-Pg boundary interval. The nannofossil assemblage indicates a shift from cool/oligo-mesotrophic conditions in the late Maastrichtian Micula murus Zone to warm/oligotrophic in the latest Maastrichtian M. prinsii Zone prior to the K-Pg boundary. At the K-Pg boundary, diversity, and total abundance of the calcareous nannofossils remarkably decreased signifying unstable marine conditions. The post-impact assemblage (lowermost part of NP1 Zone) was marked by acme of Cervisiella operculata indicating oligotrophic conditions in the photic zone related to the diminished of the marine primary producers in the lowermost Danian. At the upper portion of NP1 Zone, the assemblage is still dominated by C. operculata, besides the successive occurrence of the small-sized incoming Paleocene taxa Biantholithus sparsus and Neobiscutum romeinii. This pattern was accompanied by increased frequencies of Zeugrhabdotus sigmoides indicating stressful cool/meso-eutrophic surface water conditions signify the initial recovery interval. Upward in the early Danian NP2-NP3 zones, the nannofossil species diversity and total abundance progressively increased. Also, the nannofossil assemblage is characterized by the existence of the new Paleocene oligotrophic indicators like Cruciplacolithus primus, Coccolithus pelagicus, and Ericsonia subpertusa. This probably indicates a tendency toward rebuilding of the biological pump efficiency and, therefore, a full recovery phase was resumed.

Research Authors
Amr A. Metwally, Azza A. Mohamed, Nageh A. Obaidalla, Abdelhamid M. Salman, Kamel H. Mahfouz
Research Date
Research Department
Research Journal
Marine Micropaleontology
Research Pages
102366
Research Publisher
Elsevier
Research Rank
Q2
Research Vol
189
Research Website
https://doi.org/10.1016/j.marmicro.2024.102366
Research Year
2024

Synthesis, Characterization of Some Conductive Aromatic Polyamides/Fe3O4 NPs/ITO, and Their Utilization for Methotrexate Sensing

Research Abstract

Abstract: Here, we have synthesized four series of polyamide-conductive polymers and used them to modify Fe3O4 NPs/ITO electrodes. The ability of the modified electrodes to detect methotrexate (MTX) anticancer drug electrochemically was investigated. Synthesis of the target-conducting polyamides, P1a–d, P2a–d, P3a, P3b, P3d, and P4c-d, based on different aromatic moieties, such as ethyl 4-(2-(4H-pyrazol-4-ylidene)hydrazinyl)benzoate, diphenyl sulfone, diphenyl ether or phenyl, has been achieved. They were successfully prepared in good yield via solution–polycondensation reaction of the diamino monomers with different dicarboxylic acid chlorides in the presence of N-methyl-2-pyrrolidone (NMP) as a solvent and anhydrous LiCl as a catalyst. A model compound 4 was synthesized from one mole of ethyl-4-(2-(3, 5-diamino-4H-pyrazol-4-ylidene)hydrazinyl) benzoate (diamino monomer) (3) with two moles benzoyl chloride. The structure of the synthesized monomers and polymers was confirmed by elemental and spectral analyses. In addition, thermogravimetric analysis evaluated the thermal stabilities of these polyamides. Furthermore, the morphological properties of selected polyamides were examined using an scanning electron microscope. Polyamide/Fe3O4/ITO electrodes were prepared, and the electrochemical measurements were performed to measure the new polyamides’ conductivity and to detect the MTX anticancer drug in phosphate buffer saline using cyclic voltammetry. The polyamides (P3b and P4b)/Fe3O4/ITO electrodes showed the highest sensitivity and reversibility towards MTX.

Research Authors
Mona A. Abdel-Rahman *, Waleed A. El-Said * , Eman M. Sayed and Aboel-Magd A. Abdel-Wahab
Research Date
Research Department
Research Journal
Surfaces
Research Pages
83-96
Research Publisher
MDPI
Research Vol
Volume 6, Issue 1
Research Website
https://scholar.google.com.eg/scholar?oi=bibs&cluster=15818867712313384639&btnI=1&hl=en
Research Year
2023

The result of special programs for the first semester of the academic year 2023-2024

نتيجة برنامج النانو تكنولوجي الفصل الدراسي الأول 2023 – 2024 م

 

https://drive.google.com/file/d/1vzAbkyG_wuX3QzDkjPVPcTiVfRAhdTrU/view?usp=sharing

 

نتيجة برنامج البايو تكنولوجي الفصل الدراسي الأول 2023 – 2024 م

 

https://drive.google.com/file/d/1zPK-QSuMVGVQca__iVjp8ciqJxMlwE96/view?usp=sharing

 

 

نتيجة برنامج الكيمياء الصناعية الفصل الدراسي الأول 2023 – 2024 م

 

https://drive.google.com/file/d/1scLGXnTAlM_HXta7fXhlwduhyBbVKWBV/view?usp=sharing

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