Abdul Amir H. Kadhum
- Last known institution:
- University of Kerbala
- ORCID:
- 0000-0001-7140-6815
5
h-index
3
i10-index
97
Citations
18
Works
Trends over time
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Citation overview
Publications (bars) and citations (line) by year
- Publications
- Citations
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Publication history
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Most-cited works
- Charge separation by switching heterojunction system from Type-II to S-scheme for enhanced photocatalytic activity: Environmental detoxification and H2 production202427 citations
- Construction of a novel S-scheme CaIn2S4-ZnO/pine cone-derived biochar for enhanced visible-light-induced photocatalytic H2O2 production and antibiotic degradation202513 citations
- Boosting photocatalytic H2O2 production and non-biodegradable ofloxacin removal via a novel Ti3C2 MXene nanosheet-supported BiVO4/InVO4 Z-scheme heterojunction: Optimization and mechanism insights202511 citations
- Design and optimization of a modified solar-driven energy system utilizing advanced heat recovery methods for electricity and hydrogen production in sustainable urban applications20247 citations
- Visible light-driven photocatalytic degradation of norfloxacin by biochar-supported Cs3Bi2I9-Bi2MoO6 Z-scheme composite: Characterization, optimization, and toxicity assessment20257 citations
- Intensified wastewater treatment using In2S3 on activated carbon derived from waste tire: Peroxydisulfate activation via visible-light, characterization, composition, pH influence, and mechanism20254 citations
- Machine learning-based optimization and dynamic performance analysis of a hybrid geothermal-solar multi-output system for electricity, cooling, desalinated water, and hydrogen production: A case study20253 citations
- Optimizing palm tree wood-derived activated carbon surface using RSM-CCD for continuous wastewater treatment and enhancing CO2 capture using sulfur modified-activation20253 citations
- Constructing a novel Z-scheme Fe2O3/ZnIn2S4@Bi2WO6 photocatalyst for boosting removal of non-biodegradable ciprofloxacin and long-term stable CO2 conversion20252 citations
- A multi-heat recovery approach integrated with LNG regasification in a geothermal-driven multigeneration system: Techno-economic insights and machine learning-based optimization20252 citations