Ahmed Alzamly
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Researcher
Also affiliated: University of Ottawa (2013–2014); United Arab Emirates University (2011–2026); Al Ain Hospital (2020)
Faculty Researcher
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Ahmed Alzamly's research focuses on the development and application of advanced materials, particularly metal-organic frameworks (MOFs) and covalent organic frameworks (COFs). His work explores their utility in diverse areas, including gas sensing, catalysis, and environmental remediation.
Recent publications highlight Alzamly's investigations into MOFs for highly sensitive and flexible gas sensors, such as those detecting H₂S. He has also examined the potential of MOFs and enzyme-loaded nanomaterials for wastewater remediation and explored their role in CO₂ photoreduction and cycloaddition reactions. Further research includes the antibacterial efficacy of copper-based MOFs against specific bacterial strains.
Alzamly's scholarly output is characterized by a substantial number of publications and citations, with an h-index of 26 and over 1,800 citations. His recent activity indicates an ongoing engagement with emerging materials science and their applications.
Metrics
- h-index: 26
- Publications: 104
- Citations: 1,901
Selected Publications
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From Assembly to Application: A Comprehensive Review of Metal–Hydrogen-Bonded Organic Frameworks (2026)
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Mixed-linker Zn(II) coordination polymer with structurally accessible binding sites for recyclable trace-level removal of trimethoprim from wastewater (2026)
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Programmable Metal–Organic Complex Arrays with Precisely Controlled Metal Sequences as Tunable Multinuclear Scaffolds (2026)
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A Square-Net Europium(III) Metal–Organic Framework for Red-Emitting LEDs and Optical Temperature Sensing (2026)
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Mixed-linker Zn(II) coordination polymer with structurally accessible binding sites for efficient and recyclable trimethoprim removal from wastewater (2026)
Collaboration Network
Top Collaborators
- Mixed-linker Zn(II) coordination polymer with structurally accessible binding sites for efficient and recyclable trimethoprim removal from wastewater
- Mixed-linker Zn(II) coordination polymer with structurally accessible binding sites for efficient and recyclable trimethoprim removal from wastewater
- Mixed-linker Zn(II) coordination polymer with structurally accessible binding sites for efficient and recyclable trimethoprim removal from wastewater
- Mixed-linker Zn(II) coordination polymer with structurally accessible binding sites for efficient and recyclable trimethoprim removal from wastewater
- Mixed-linker Zn(II) coordination polymer with structurally accessible binding sites for efficient and recyclable trimethoprim removal from wastewater
- Mixed-linker Zn(II) coordination polymer with structurally accessible binding sites for efficient and recyclable trimethoprim removal from wastewater
- Mixed-linker Zn(II) coordination polymer with structurally accessible binding sites for efficient and recyclable trimethoprim removal from wastewater
- Mixed-linker Zn(II) coordination polymer with structurally accessible binding sites for efficient and recyclable trimethoprim removal from wastewater
- Mixed-linker Zn(II) coordination polymer with structurally accessible binding sites for efficient and recyclable trimethoprim removal from wastewater
- Mixed-linker Zn(II) coordination polymer with structurally accessible binding sites for efficient and recyclable trimethoprim removal from wastewater
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