Iman Khalil
Oval Office For Studies and Research
Research Expertise
Publications
Bioinspired Syntheses of the Pyridoacridine Marine Alkaloids Demethyldeoxyamphimedine, Deoxyamphimedine, and Amphimedine
The Journal of Organic Chemistry / Dec 17, 2015
Khalil, I. M., Barker, D., & Copp, B. R. (2015). Bioinspired Syntheses of the Pyridoacridine Marine Alkaloids Demethyldeoxyamphimedine, Deoxyamphimedine, and Amphimedine. The Journal of Organic Chemistry, 81(1), 282–289. https://doi.org/10.1021/acs.joc.5b02312
Biomimetic Synthesis of Thiaplidiaquinones A and B
Journal of Natural Products / Dec 10, 2012
Khalil, I. M., Barker, D., & Copp, B. R. (2012). Biomimetic Synthesis of Thiaplidiaquinones A and B. Journal of Natural Products, 75(12), 2256–2260. https://doi.org/10.1021/np300790g
Structure-Activity Relationships of the Bioactive Thiazinoquinone Marine Natural Products Thiaplidiaquinones A and B
Marine Drugs / Aug 10, 2015
Harper, J., Khalil, I., Shaw, L., Bourguet-Kondracki, M.-L., Dubois, J., Valentin, A., Barker, D., & Copp, B. (2015). Structure-Activity Relationships of the Bioactive Thiazinoquinone Marine Natural Products Thiaplidiaquinones A and B. Marine Drugs, 13(8), 5102–5110. https://doi.org/10.3390/md13085102
Bio-inspired dimerisation of prenylated quinones directed towards the synthesis of the meroterpenoid natural products, the scabellones
Tetrahedron Letters / Mar 01, 2015
Chan, S. T. S., Pullar, M. A., Khalil, I. M., Allouche, E., Barker, D., & Copp, B. R. (2015). Bio-inspired dimerisation of prenylated quinones directed towards the synthesis of the meroterpenoid natural products, the scabellones. Tetrahedron Letters, 56(12), 1486–1488. https://doi.org/10.1016/j.tetlet.2015.02.024
Bridging gaps in distance learning during a pandemic: exploratory questionnaire based analysis in Jordan during COVID-19 lockdown
International Journal of Technology Enhanced Learning / Jan 01, 2022
Huwaij, R. A., Alkhader, E., Gharaibeh, S., & Khalil, I. (2022). Bridging gaps in distance learning during a pandemic: exploratory questionnaire based analysis in Jordan during COVID-19 lockdown. International Journal of Technology Enhanced Learning, 14(2), 198. https://doi.org/10.1504/ijtel.2022.121842
Structure-activity relationships of bioactive marine natural products leading to the identification of more potent non-natural analogues – the meroterpenoids, thiaplidiaquinones A and B
Planta Medica / Dec 14, 2016
Cadelis, M., Khalil, I., Harper, J., Shaw, L., Dubois, J., Valentin, A., Bourguet-Kondracki, M., Barker, D., & Copp, B. (2016). Structure-activity relationships of bioactive marine natural products leading to the identification of more potent non-natural analogues – the meroterpenoids, thiaplidiaquinones A and B. Planta Medica, 81(S 01), S1–S381. https://doi.org/10.1055/s-0036-1596124
Bioactive Natural Products from Marine-Derived Fungi
Studies in Natural Products Chemistry / Jan 01, 2015
Saleem, M., & Nazir, M. (2015). Bioactive Natural Products from Marine-Derived Fungi. In Studies in Natural Products Chemistry (pp. 297–361). Elsevier. https://doi.org/10.1016/b978-0-444-63473-3.00009-5
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