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OverView
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The development of modern computational chemistry methods aims to enhance our understanding of complex chemical systems, including studying the impact of heavy metals on fluorescence-based sensors, elucidating the mechanisms behind chemical reactions, and designing novel precursors for nanofabrication applications. These advancements offer valuable insights into material properties and reaction dynamics, contributing to innovations in sensing technologies and nanotechnology.
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Research Intersets:
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Development of modern methods in computational chemistry
Study the effect of heavy metals on the fluorescence designed sensors
Study the mechanisms of chemical reactions
Design precursors for nanofabrication purposes
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Qualifications
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Degree
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University
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Specialization
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Graduation year
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| 1 | PHD | University of Manitoba | Chemistry | 2015 | | 2 | MASTER DEGREE | Yarmouk University | Chemistry | 2001 |
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Publications
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1- DFT Insights into FEBID Stability: Condensed Study of
Gold(I) Complexes with Phosphine Ligands ,ChemistrySelect, 2024,Vol. 9,no. . 2- Trivinylphosphine Oxide: Synthesis, Characterization, and Polymerization Reactivity Investigated Using Single-Crystal Analysis and Density Functional Theory ,Molecules, 2023,Vol. 28,no. 28. 3- Robust Barium Phosphonate Metal?Organic Frameworks Synthesized under Aqueous Conditions ,ACS Materials Letters, 2021,Vol. 3,no. 3.
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University Courses Taught
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1- Advanced Quantum Chemistry (Master Degree). 2- Physical Chemistry 3. 3- Physical Chemistry 2. 4- Physical Chemistry 1. 5- Physical Chemistry Lab 2. 6- Physical Chemistry Lab 1. 7- General Chemistry 2. 8- General Chemistry 1. 9- General Chemistry Lab 2. 10- General Chemistry Lab 1.
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