Skip to main content

Insights into structural and spectral properties of cobalt II complexes bearing asymmetric thiourea ligands and their remarkable bioactivities against Gram negative bacteria

Research Authors
Hanan K Mosbah, Aref AM Aly, Amna SA Zidan, Ahmed BM Ibrahim, Jaromir Marek, Ghada Abd-Elmonsef Mahmoud
Research Date
Research Department
Research Journal
Inorganic Chemistry Communications
Research Year
2025

Synthesis Characterization X-Ray Structure and Antifungal Activity of a Platinum II Thiourea Complex

Research Authors
Aref AM Aly, Hanan K Mosbah, Amna SA Zidan, Ahmed BM Ibrahim, S Mark Roe, Ghada Abd‐Elmonsef Mahmoud
Research Date
Research Department
Research Journal
ChemistrySelect
Research Year
2025

Rational Design of a Copper I Complex Derived from an Asymmetric Thiourea Ligand with High Antifungal Activities

Research Authors
Hanan K Mosbah, Aref AM Aly, Amna SA Zidan, Ahmed BM Ibrahim, S Mark Roe, Ghada Abd‐Elmonsef Mahmoud
Research Date
Research Department
Research Journal
ChemistrySelect
Research Year
2025

A newly developed cobalt(II) complex derived from a thiourea derivative and assessment of its potential bioapplicability against plant root pathogens

Research Authors
Hanan K Mosbah, Aref AM Aly, Amna SA Zidan, Ahmed BM Ibrahim, Jaromir Marek, Ghada Abd-Elmonsef Mahmoud
Research Date
Research Department
Research Journal
journal of Coordination Chemistry
Research Year
2025

Insights into structural and spectral properties of cobalt(II) complexes bearing asymmetric thiourea ligands and their remarkable bioactivities against Gram negative bacteria

Research Authors
Hanan K. Mosbah, Aref A.M. Aly, Amna S.A. Zidan, S. Mark Roe, Ghada Abd-Elmonsef Mahmoud, Ahmed B.M. Ibrahim
Research Date
Research Department
Research Journal
Inorganic Chemistry Communications
Research Pages
115143
Research Vol
181
Research Year
2025

Rational Design of aCopper(I) Complex Derived from an Asymmetric Thiourea Ligand with High Antifungal Activities

Research Authors
Hanan K. Mosbah, Aref A. M. Aly, Amna S. A. Zidan, Ahmed B. M. Ibrahim, S. Mark Roe, Ghada Abd-Elmonsef Mahmoud
Research Date
Research Department
Research Journal
ChemistrySelect
Research Pages
e03254
Research Vol
10
Research Year
2025

Carbon gel materials: synthesis, structural design, and emerging applications in energy and environmental technologies

Research Authors
Md Shariful Islam, Shreyase Kundu, Mst Samsunnahar, Tasmina Khandaker, Ahmed B. M. Ibrahim, Md Al Amin Mia Anik, Md. Kamrul Hasan, Muhammad Sarwar Hossain
Research Date
Research Department
Research Journal
Materials Advances
Research Pages
7153-7206
Research Vol
6
Research Year
2025

Layer‑by‑layer self‑assembled dip coating: an eco‑friendly approach toward multi‑functional durable textile finishing

Research Authors
Sana Javaid, Shafi Ur Rehman, Ahmed B.M. Ibrahim, Mohamed A. Habib, Fawad Ahmad
Research Date
Research Department
Research Journal
Chemical papers
Research Pages
659–3678
Research Vol
79
Research Website
https://link.springer.com/article/10.1007/s11696-025-04022-7
Research Year
2025

Enhanced acidogenic gas utilization in two-stage co-digestion via biogas recirculation: Metagenomics analysis

Research Abstract

Acidogenic gas (H2 and CO2) from acidogenic reactors is often ignored in two-stage anaerobic digestion due to its high CO2 content. While biogas recirculation improves methane production and substrate utilization, the underlying metabolic mechanisms remain unclear. This study explores these mechanisms using metagenomics in a novel two-stage system utilizing acidogenic gas. Biogas recirculation in the methanogenic stage increased average methane yield from 554 to 608 mL/g VS as the flow rate rose from 0 to 0.4 L/min, with a peak of 696 mL/g VS at 0.4 L/min. However, the methane yield decreased to 586 mL/g VS at 0.8 L/min. Recirculation enriched fermentative bacteria, boosting soluble metabolite production but slightly reducing organic matter removal. Although dominant microbial communities were significantly unaltered, syntrophic bacteria such as norank_f__norank_o__MBA03 (8.8–12.2%) were enriched, strengthening microbial networks. Different methanogenic genera emerged, enabling rapid metabolite consumption via hydrogenotrophic, acetoclastic, and methylotrophic pathways. Metagenomic analysis revealed that recirculation upregulated key functions like signal transduction, cell motility, aromatic degradation, methanogenesis, and possible methane oxidation. This promoted carbon substrate availability and methane production while highlighting potential for valuable biochemical recovery from volatile fatty acids, supporting the circular economy and enhancing the cost-effectiveness of biogas systems.

Research Authors
Dominic Yellezuome , Xianpu Zhu , Ronghou Liu , Chen Sun, Mohamed Hemida Abd-Alla , Abdel-Hamied M. Rasmey
Research Date
Research Journal
Renewable Energy
Research Member
Research Pages
125310
Research Publisher
Elsevier
Research Rank
Q1
Research Website
https://doi.org/10.1016/j.renene.2026.125310
Research Year
2026
Subscribe to