Sana Batool, MD
she/her/hers
Hospital ResidentCards
About
Research
Publications
2026
Bio-engineered CeO₂ nanoparticles: a sustainable approach for photocatalytic degradation of environmental pollutants
Asadullah, Ahmed I, Howells C, Haitao L, Majeed Y, Batool S, Tariq T, Saif M, Hong C, Hassan S, Gulzar H, Han X, Shabbir M, Zahid G, Mustafa G, Hasan M. Bio-engineered CeO₂ nanoparticles: a sustainable approach for photocatalytic degradation of environmental pollutants. 3 Biotech 2026, 16: 301. PMID: 42555358, PMCID: PMC13332930, DOI: 10.1007/s13205-026-04918-5.Peer-Reviewed Reviews, Practice Guidelines, Standards, and Consensus StatementsBiogenic synthesis of Ag–ZnO nanocomposites using Withania coagulans extract: structural characterization and antibacterial evaluation
Xia Q, Zhao X, Xu X, Ayaz S, Batool S, Lin M, Tariq T, Zhao M, Liu Q, Saif M, Maryam R, Mustafa G, Hasan M. Biogenic synthesis of Ag–ZnO nanocomposites using Withania coagulans extract: structural characterization and antibacterial evaluation. 3 Biotech 2026, 16: 294. DOI: 10.1007/s13205-026-04880-2.Peer-Reviewed Original ResearchBiogenic reduction mechanisms in iron oxide nanoparticle synthesis: Strategies to mitigate microbial resistance
Majeed Y, Ahmed I, Fatima N, Asadullah, Hassan S, Batool S, Tariq T, Berillo D, Carneiro L, Mustafa G, Liu Q, Hasan M. Biogenic reduction mechanisms in iron oxide nanoparticle synthesis: Strategies to mitigate microbial resistance. Biophysical Chemistry 2026, 337: 107677. PMID: 42330595, DOI: 10.1016/j.bpc.2026.107677.Peer-Reviewed Reviews, Practice Guidelines, Standards, and Consensus StatementsMetabolic Regulations of Glycine max Induced by Potassium Nanoparticles Under Simulated Salinity Conditions: A Comparative Morpho‐Physiological Aspect
Huang X, Hani U, Tariq T, Hussain K, Batool S, Mustafa G, Ghorbanpour M, Hasan M. Metabolic Regulations of Glycine max Induced by Potassium Nanoparticles Under Simulated Salinity Conditions: A Comparative Morpho‐Physiological Aspect. Physiologia Plantarum 2026, 178: e70918. PMID: 42077179, DOI: 10.1111/ppl.70918.Peer-Reviewed Original ResearchCorrigendum to “Facile synthesis of rare earth metal dual-doped Pr2O3 nanostructures: Enhanced electrochemical water-splitting and antimicrobial properties” [Ceram. Int. 48(2022) 19150–19165]
Munawar T, Mukhtar F, Nadeem M, Manzoor S, Ashiq M, Riaz M, Batool S, Hasan M, Iqbal F. Corrigendum to “Facile synthesis of rare earth metal dual-doped Pr2O3 nanostructures: Enhanced electrochemical water-splitting and antimicrobial properties” [Ceram. Int. 48(2022) 19150–19165]. Ceramics International 2026, 52: 20737-20738. DOI: 10.1016/j.ceramint.2026.03.098.Commentaries, Editorials and LettersMorphological and biochemical traits of Solanum Lycopersicum underzinc oxide nanoparticles in a salinity challenged environment
Huang X, Chaudhari S, Iftikhar F, Batool S, Mahmood F, Hatami M, Hasan M, Mustafa G. Morphological and biochemical traits of Solanum Lycopersicum underzinc oxide nanoparticles in a salinity challenged environment. BMC Plant Biology 2026, 26: 778. PMID: 42056868, PMCID: PMC13130742, DOI: 10.1186/s12870-026-08670-z.Peer-Reviewed Original ResearchRetraction notice to “Dual Z-scheme core-shell PANI-CeO2-Fe2O3-NiO heterostructured nanocomposite for dyes remediation under sunlight and bacterial disinfection” [Environ. Res. 215 (2022) 114140]
Mukhtar F, Munawar T, Nadeem M, Naveed Ur Rehman M, Khan S, Koc M, Batool S, Hasan M, Iqbal F. Retraction notice to “Dual Z-scheme core-shell PANI-CeO2-Fe2O3-NiO heterostructured nanocomposite for dyes remediation under sunlight and bacterial disinfection” [Environ. Res. 215 (2022) 114140]. Environmental Research 2026, 299: 124378. PMID: 41932107, DOI: 10.1016/j.envres.2026.124378.Peer-Reviewed Original ResearchBetaine-loaded Foeniculum vulgare@Fe-MOF: A novel approach to combat bleomycin-induced hepatotoxicity in rats
Batool S, Ahmed I, Howells C, Haitao L, Saif M, Tariq T, Hussain R, Ahmad M, Tauheed S, Hong C, Munawar T, Hassan S, Mustafa G, Hasan M. Betaine-loaded Foeniculum vulgare@Fe-MOF: A novel approach to combat bleomycin-induced hepatotoxicity in rats. Journal Of Environmental Chemical Engineering 2026, 14: 120642. DOI: 10.1016/j.jece.2025.120642.Peer-Reviewed Original Research
2025
Correction: Green PEGylated-Sily@ZnFe2O4 nanocomposites for amelioration of ROS and DNA damage in rat liver
Waqas M, Saif M, Batool S, Ahmed M, Tariq T, Hussain R, Mustafa G, Ghorbanpour M, Hasan M. Correction: Green PEGylated-Sily@ZnFe2O4 nanocomposites for amelioration of ROS and DNA damage in rat liver. Scientific Reports 2025, 15: 42273. PMID: 41310026, PMCID: PMC12660964, DOI: 10.1038/s41598-025-29407-2.Commentaries, Editorials and LettersEngineering of Foeniculum vulgare with material science: La2O3-CeO2-CuO nanocomposites to revolutionize photocatalysis and antimicrobial challenges
Batool S, Ahmed I, Howells C, Saif M, Tariq T, Waqas M, Haitao L, Duan Y, Hussain M, Ghorbanpour M, Mustafa G, Hasan M. Engineering of Foeniculum vulgare with material science: La2O3-CeO2-CuO nanocomposites to revolutionize photocatalysis and antimicrobial challenges. Journal Of Environmental Chemical Engineering 2025, 13: 118470. DOI: 10.1016/j.jece.2025.118470.Peer-Reviewed Original Research
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