Dr. Edreese Alsharaeh

Professor of Chemistry

Bio

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C.V
Education:
1999 - 2004          Virginia Commonwealth University, Richmond, VA
                                Ph.D. Physical Chemistry
1994 - 1998          Tennessee State University, Nashville, TN
                                M.S. Organic Chemistry
1989 - 1993          Jordan University of Science and Technology, Irbid, Jordan                          
                              B.S., Major: Applied Chemistry
 
Teaching Experience:
 
2012 – present   Associate Professor of Chemistry, Alfaisal University
2009 – 2012:        Assistant Professor of Chemistry, Alfaisal University
2008 – 2009:        Assistant Professor of Chemistry Gulf University of Science and Technology
Summer 2008     Visiting  professor, Virginia Commonwealth University(VCU), Richmond Virginia.
2006 – 2008 :     Assistant Professor, George Mason University RAK campus, UAE.
2004-2006:              Sr. Scientist, Research and Development, Vintage Pharmaceuticals
1999 - 2004            Teaching Assistant, Virginia Commonwealth University, Richmond, VA
      Instructor of General Chemistry recitation 101, 102 level, Physical,                                                   Analytical chemistry and Instrumental Analysis Laboratories 300 and 400 levels
1995 - 1997              Teaching Assistant,TennesseeStateUniversity,Nashville,TN
 
 
 Research
1999-
Research interests are in the general areas of molecular clusters, gas phase and cluster polymerization,  nanostructured and polymer nanocomposites materials containg graphene nansheets and metal nanoparticles. The major goal is to gain insights as to how the properties of matter evolve as the size of a material system ranges from molecular to macroscopic dimensions.
1994 –1997       
4   Research on the synthesis and characterization of co-polymers, using                                            DSC and FTIR.TennesseeStateUniversity,Nashville,TN
 
 
Awards:

President of the University of Jordan Award.
President of the University of Jordan Appreciation Certificate.
Alfaisal University Recognition Award
Alfaisal University appreciation Award

 
Affiliations:
American Chemical Society
 
Grants and Sponsored Projects

King AbdelAziz City of Sience and Technology.KACST “Synthesis and characterization of polymer nanocomposites via gas phase polymerization” 2011 Funded amount 1,987,000 SAR (pending)
King AbdelAziz City of Sience and Technology.KACST ”Effect of Temperature Gradient on Pressure Driven Water Flow in Single-Walled Carbon Nanotubes (SWCNT)” 2011 Funded amount 1,347,000 SAR. Role Co-PI.(pending)
King AbdelAziz City of Sience and Technology with the collaboration with King AbdelAziz University with a project entitled “The design of new composite materials containing metal oxide supported 2D-graphene sheets”, Funding amount 1,870,000 SAR, Role Co-PI. (Pending)

 
Publications:
 

Alsharaeh, E.H. Othman Ali, Facile Method for in situ Preparation of STY-MMA Copolymer Containing Graphene sheets. Prepr. Pap.-Am. Chem. Soc., Div. Pet. Chem. 2012, 57 (1)
Alsharaeh, E.H. Intracluster Ion Molecule Reactions Following the Generation of Mg+Within Polar Clusters. Int. J. Mol. Sci. 2011, 12, 9095-9107.
Alsharaeh, E.H., El-Shall MS, Ion mobility study of the mechanism of the gas phase thermal polymerization of styrene and the structures of the early oligomers. Polymer, 52 (2011), 5551-55594.
El-Shall, M. Samy; Ibrahim, Yehia; Alsharaeh, Edreese; Meot-Ner, Michael; Watson, Simon: "Reactions between Aromatic Hydrocarbons and Heterocyclics: Covalent and Proton-Bound Dimer Ions of Benzene/Pyridine". Journal of the American Chemical Society Journal of the American Chemical Society 131(29):10066-76, 2009
Ibrahim, Yehia; Alsharaeh, Edreese; Mabrouki, Ridha; Momoh, Paul; Xie, Enli; El-Shall, M. Samy.   Ion Mobility of Ground and Excited States of Laser-Generated Transition Metal Cations.    Journal of Physical Chemistry A  (2008),  112(6),  1112-1124. 
Abdelsayed, Victor; Alsharaeh, Edreese; El-Shall, M. Samy.   Catalyzed radical polymerization of styrene vapor on nanoparticle surfaces and the incorporation of metal and metal oxide nanoparticles within polystyrene polymers.    Journal of Physical Chemistry B  (2006),  110(39),  19100-19103. 
Alsharaeh, Edreese H.; Ibrahim, Yehia M.; El-Shall, M. Samy.   Direct Evidence for the Gas Phase Thermal Polymerization of Styrene. Determination of the Initiation Mechanism and Structures of the Early Oligomers by Ion Mobility.    Journal of the American Chemical Society  (2005),  127(17),  6164-6165. 
 Ibrahim, Yehia; Alsharaeh, Edreese; Dias, Keith; Meot-Ner, Michael; El-Shall, M. Samy.   Stepwise Hydration and Multibody Deprotonation with Steep Negative Temperature Dependence in the Benzene.bul.+-Water System. [Erratum to document cited in CA141:395073].    Journal of the American Chemical Society  (2005),  127(11),  4114. 
Ibrahim, Yehia; Alsharaeh, Edreese; Dias, Keith; Meot-Ner, Michael; El-Shall, M. Samy.   Stepwise Hydration and Multibody Deprotonation with Steep Negative Temperature Dependence in the Benzene.bul.+-Water System.    Journal of the American Chemical Society  (2004),  126(40),  12766-12767. 
brahim, Yehia M.; Alsharaeh, Edreese H.; El-Shall, M. Samy.   Evidence for Penning Ionization in the Generation of Electronically Excited States of Transition Metal Cations by Laser Vaporization.    Journal of Physical Chemistry B  (2004),  108(13),  3959-3962. 
brahim, Yehia; Alsharaeh, Edreese; Rusyniak, Mark; Watson, Simon; Meot-Ner, Michael; El-Shall, M. Samy.   Separation of isomers by dimer formation: isomerically pure benzene+ and toluene+ ions, and their dimers: ab initio calculations on (benzene)2+.    Chemical Physics Letters  (2003),  380(1,2),  21-28. 
Rusyniak, Mark; Ibrahim, Yehia; Alsharaeh, Edreese; Meot-Ner, Michael; El-Shall, M. Samy.   Mass-Selected Ion Mobility Studies of the Isomerization of the Benzene Radical Cation and Binding Energy of the Benzene Dimer Cation. Separation of Isomeric Ions by Dimer Formation.    Journal of Physical Chemistry A  (2003),  107(38),  7656-7666.
El-Shall, M. Samy; Abdelsayed, Victor; Pithawalla, Yezdi B.; Alsharaeh, Edreese; Deevi, Seetharama C.   Vapor Phase Growth and Assembly of Metallic, Intermetallic, Carbon, and Silicon Nanoparticle Filaments.    Journal of Physical Chemistry B  (2003),  107(13),  2882-2886. 

 

Publications

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Catalyzed radical polymerization of styrene vapor on nanoparticle surfaces and the incorporation of metal and metal oxide nanoparticles within polystyrene polymers

Journal Article ,
Catalyzed radical polymerization of styrene vapor on nanoparticle surfaces and the incorporation of metal and metal oxide nanoparticles within polystyrene polymers. (2006). Catalyzed radical polymerization of styrene vapor on nanoparticle surfaces and the incorporation of metal and metal oxide nanoparticles within polystyrene polymers. The Journal Of Physical Chemistry B 110 (39), 19100-19103, 2006, 110, 19100–19103.

Catalyzed radical polymerization of styrene vapor on nanoparticle surfaces and the incorporation of metal and metal oxide nanoparticles within polystyrene polymers

Journal Article ,
Catalyzed radical polymerization of styrene vapor on nanoparticle surfaces and the incorporation of metal and metal oxide nanoparticles within polystyrene polymers. (2006). Catalyzed radical polymerization of styrene vapor on nanoparticle surfaces and the incorporation of metal and metal oxide nanoparticles within polystyrene polymers. The Journal Of Physical Chemistry B, 110, 19100–19103.

Catalyzed radical polymerization of styrene vapor on nanoparticle surfaces and the incorporation of metal and metal oxide nanoparticles within polystyrene polymers

Journal Article ,
Catalyzed radical polymerization of styrene vapor on nanoparticle surfaces and the incorporation of metal and metal oxide nanoparticles within polystyrene polymers. (2006). Catalyzed radical polymerization of styrene vapor on nanoparticle surfaces and the incorporation of metal and metal oxide nanoparticles within polystyrene polymers. The Journal Of Physical Chemistry B, 110, 19100–19103.

Stepwise Hydration, and Multi-Body Deprotonation with Steep Negative Temperature Dependence, in the Benzene•+- Water System [J. Am. Chem. Soc. 2004, 126, 12766- 12767].

Journal Article ,
Stepwise Hydration, and Multi-Body Deprotonation with Steep Negative Temperature Dependence, in the Benzene•+- Water System [J. Am. Chem. Soc. 2004, 126, 12766- 12767]. (2005). Stepwise Hydration, and Multi-Body Deprotonation with Steep Negative Temperature Dependence, in the Benzene•+- Water System [J. Am. Chem. Soc. 2004, 126, 12766- 12767]. Journal Of The American Chemical Society, 127, 4114–4114.

Direct evidence for the gas phase thermal polymerization of styrene. Determination of the initiation mechanism and structures of the early oligomers by ion mobility

Journal Article ,
Direct evidence for the gas phase thermal polymerization of styrene. Determination of the initiation mechanism and structures of the early oligomers by ion mobility. (2005). Direct evidence for the gas phase thermal polymerization of styrene. Determination of the initiation mechanism and structures of the early oligomers by ion mobility. Journal Of The American Chemical Society, 127, 6164–6165.

Direct evidence for the gas phase thermal polymerization of styrene. Determination of the initiation mechanism and structures of the early oligomers by ion mobility

Journal Article ,
Direct evidence for the gas phase thermal polymerization of styrene. Determination of the initiation mechanism and structures of the early oligomers by ion mobility. (2005). Direct evidence for the gas phase thermal polymerization of styrene. Determination of the initiation mechanism and structures of the early oligomers by ion mobility. Journal Of The American Chemical Society 127 (17), 6164-6165, 2005, 127, 6164–6165.

Stepwise Hydration, and Multi-Body Deprotonation with Steep Negative Temperature Dependence, in the Benzene+-Water System [J. Am. Chem. Soc. 2004, 126, 12766-12767].

Journal Article ,
Stepwise Hydration, and Multi-Body Deprotonation with Steep Negative Temperature Dependence, in the Benzene+-Water System [J. Am. Chem. Soc. 2004, 126, 12766-12767]. (2005). Stepwise Hydration, and Multi-Body Deprotonation with Steep Negative Temperature Dependence, in the Benzene+-Water System [J. Am. Chem. Soc. 2004, 126, 12766-12767]. Journal Of The American Chemical Society, 127, 4114–4114.

Meot-Ner (Mautner), M.; Alsharaeh, EH; El-Shall, MS; Scheiner, S

Journal Article ,
Meot-Ner (Mautner), M.; Alsharaeh, EH; El-Shall, MS; Scheiner, S. (2005). Meot-Ner (Mautner), M.; Alsharaeh, EH; El-Shall, MS; Scheiner, S. J. Am. Chem. Soc 127, 7053, 2005.

Structures and reactivity of cluster and oligomer ions in the gas phase

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Structures and reactivity of cluster and oligomer ions in the gas phase. (2005). Structures and reactivity of cluster and oligomer ions in the gas phase. Abstracts Of Papers Of The American Chemical Society 230, U2846-U2847, 2005.

Ion mobility for probing the structures of styrene oligomers and the mechanism of thermal polymerization in the gas phase.

Journal Article ,
Ion mobility for probing the structures of styrene oligomers and the mechanism of thermal polymerization in the gas phase. (2005). Ion mobility for probing the structures of styrene oligomers and the mechanism of thermal polymerization in the gas phase. Abstracts Of Papers Of The American Chemical Society 229, U769-U769, 2005.

Stepwise Hydration, and Multi-Body Deprotonation with Steep Negative Temperature Dependence, in the Benzene•+- Water System [J. Am. Chem. Soc. 2004, 126, 12766- 12767].

Journal Article ,
Stepwise Hydration, and Multi-Body Deprotonation with Steep Negative Temperature Dependence, in the Benzene•+- Water System [J. Am. Chem. Soc. 2004, 126, 12766- 12767]. (2005). Stepwise Hydration, and Multi-Body Deprotonation with Steep Negative Temperature Dependence, in the Benzene•+- Water System [J. Am. Chem. Soc. 2004, 126, 12766- 12767]. Journal Of The American Chemical Society, 127, 4114–4114.

Direct evidence for the gas phase thermal polymerization of styrene. Determination of the initiation mechanism and structures of the early oligomers by ion mobility

Journal Article ,
Direct evidence for the gas phase thermal polymerization of styrene. Determination of the initiation mechanism and structures of the early oligomers by ion mobility. (2005). Direct evidence for the gas phase thermal polymerization of styrene. Determination of the initiation mechanism and structures of the early oligomers by ion mobility. Journal Of The American Chemical Society, 127, 6164–6165.

Stepwise Hydration, and Multi-Body Deprotonation with Steep Negative Temperature Dependence, in the Benzene•+− Water System [J. Am. Chem. Soc. 2004, 126, 12766− 12767].

Journal Article ,
Stepwise Hydration, and Multi-Body Deprotonation with Steep Negative Temperature Dependence, in the Benzene•+− Water System [J. Am. Chem. Soc. 2004, 126, 12766− 12767]. (2005). Stepwise Hydration, and Multi-Body Deprotonation with Steep Negative Temperature Dependence, in the Benzene•+− Water System [J. Am. Chem. Soc. 2004, 126, 12766− 12767]. Journal Of The American Chemical Society 127 (11), 4114-4114, 2005.

Gas Phase Studies of Molecular Clusters Containing Metal Cations, and the Ion Mobility of Styrene Oligomers

Journal Article ,
Gas Phase Studies of Molecular Clusters Containing Metal Cations, and the Ion Mobility of Styrene Oligomers. (2004). Gas Phase Studies of Molecular Clusters Containing Metal Cations, and the Ion Mobility of Styrene Oligomers.

Gas Phase Studies of Molecular Clusters Containing Metal Cations, and the Ion Mobility of Styrene Oligomers

Journal Article ,
Gas Phase Studies of Molecular Clusters Containing Metal Cations, and the Ion Mobility of Styrene Oligomers. (2004). Gas Phase Studies of Molecular Clusters Containing Metal Cations, and the Ion Mobility of Styrene Oligomers. Gas Phase Studies Of Molecular Clusters Containing Metal Cations, And The Ion Mobility Of Styrene Oligomers.

Initiation Mechanism and the Structures of the Early Oligomers in the Gas Phase Polymerization of Styrene

Journal Article ,
Initiation Mechanism and the Structures of the Early Oligomers in the Gas Phase Polymerization of Styrene. (2004). Initiation Mechanism and the Structures of the Early Oligomers in the Gas Phase Polymerization of Styrene. Abstracts, 56Th Southeast Regional Meeting Of The American Chemical Society …, 2004.

Stepwise Hydration and Multibody Deprotonation with Steep Negative Temperature Dependence in the Benzene•+- Water System

Journal Article ,
Stepwise Hydration and Multibody Deprotonation with Steep Negative Temperature Dependence in the Benzene•+- Water System. (2004). Stepwise Hydration and Multibody Deprotonation with Steep Negative Temperature Dependence in the Benzene•+- Water System. Journal Of The American Chemical Society, 126, 12766–12767.

Stepwise Hydration and Multibody Deprotonation with Steep Negative Temperature Dependence in the Benzene•+−Water System

Journal Article ,
Stepwise Hydration and Multibody Deprotonation with Steep Negative Temperature Dependence in the Benzene•+−Water System. (2004). Stepwise Hydration and Multibody Deprotonation with Steep Negative Temperature Dependence in the Benzene•+−Water System. Journal Of The American Chemical Society 126 (40), 12766-12767, 2004.

Evidence for penning ionization in the generation of electronically excited states of transition metal cations by laser vaporization

Journal Article ,
Evidence for penning ionization in the generation of electronically excited states of transition metal cations by laser vaporization. (2004). Evidence for penning ionization in the generation of electronically excited states of transition metal cations by laser vaporization. The Journal Of Physical Chemistry B 108 (13), 3959-3962, 2004, 108, 3959–3962.

Evidence for penning ionization in the generation of electronically excited states of transition metal cations by laser vaporization

Journal Article ,
Evidence for penning ionization in the generation of electronically excited states of transition metal cations by laser vaporization. (2004). Evidence for penning ionization in the generation of electronically excited states of transition metal cations by laser vaporization. The Journal Of Physical Chemistry B, 108, 3959–3962.

Stepwise Hydration and Multibody Deprotonation with Steep Negative Temperature Dependence in the Benzene+-Water System

Journal Article ,
Stepwise Hydration and Multibody Deprotonation with Steep Negative Temperature Dependence in the Benzene+-Water System. (2004). Stepwise Hydration and Multibody Deprotonation with Steep Negative Temperature Dependence in the Benzene+-Water System. Journal Of The American Chemical Society, 126, 12766–12767.

Stepwise Hydration, and Multi-Body Deprotonation with Steep Negative Temperature Dependence, in the Benzene.+-Water System

Journal Article ,
Stepwise Hydration, and Multi-Body Deprotonation with Steep Negative Temperature Dependence, in the Benzene.+-Water System. (2004). Stepwise Hydration, and Multi-Body Deprotonation with Steep Negative Temperature Dependence, in the Benzene.+-Water System. Abstracts, 56Th Southeast Regional Meeting Of The American Chemical Society …, 2004.

Gas Phase Studies of Molecular Clusters Containing Metal Cations, and the Ion Mobility of Styrene Oligomers

Journal Article ,
Gas Phase Studies of Molecular Clusters Containing Metal Cations, and the Ion Mobility of Styrene Oligomers. (2004). Gas Phase Studies of Molecular Clusters Containing Metal Cations, and the Ion Mobility of Styrene Oligomers. Gas Phase Studies Of Molecular Clusters Containing Metal Cations, And The Ion Mobility Of Styrene Oligomers.

Stepwise Hydration and Multibody Deprotonation with Steep Negative Temperature Dependence in the Benzene•+- Water System

Journal Article ,
Stepwise Hydration and Multibody Deprotonation with Steep Negative Temperature Dependence in the Benzene•+- Water System. (2004). Stepwise Hydration and Multibody Deprotonation with Steep Negative Temperature Dependence in the Benzene•+- Water System. Journal Of The American Chemical Society, 126, 12766–12767.

Evidence for penning ionization in the generation of electronically excited states of transition metal cations by laser vaporization

Journal Article ,
Evidence for penning ionization in the generation of electronically excited states of transition metal cations by laser vaporization. (2004). Evidence for penning ionization in the generation of electronically excited states of transition metal cations by laser vaporization. The Journal Of Physical Chemistry B, 108, 3959–3962.

Mass-selected ion mobility studies of the isomerization of the benzene radical cation and binding energy of the benzene dimer cation. Separation of isomeric ions by dimer formation

Journal Article ,
Mass-selected ion mobility studies of the isomerization of the benzene radical cation and binding energy of the benzene dimer cation. Separation of isomeric ions by dimer formation. (2003). Mass-selected ion mobility studies of the isomerization of the benzene radical cation and binding energy of the benzene dimer cation. Separation of isomeric ions by dimer formation. The Journal Of Physical Chemistry A, 107, 7656–7666.

Vapor phase growth and assembly of metallic, intermetallic, carbon, and silicon nanoparticle filaments

Journal Article ,
Vapor phase growth and assembly of metallic, intermetallic, carbon, and silicon nanoparticle filaments. (2003). Vapor phase growth and assembly of metallic, intermetallic, carbon, and silicon nanoparticle filaments. The Journal Of Physical Chemistry B, 107, 2882–2886.

Meot-Ner (Mautner), M.; El-Shall, MS Mass-Selected Ion Mobility Studies of Isomerization of the Benzene Radical Cation and Binding Energy of the Benzene Dimer Cation …

Journal Article ,
Meot-Ner (Mautner), M.; El-Shall, MS Mass-Selected Ion Mobility Studies of Isomerization of the Benzene Radical Cation and Binding Energy of the Benzene Dimer Cation …. (2003). Meot-Ner (Mautner), M.; El-Shall, MS Mass-Selected Ion Mobility Studies of Isomerization of the Benzene Radical Cation and Binding Energy of the Benzene Dimer Cation …. J. Phys. Chem. A 107, 7656, 2003.

Solvation of atomic metal cations within benzene and water clusters.

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Solvation of atomic metal cations within benzene and water clusters. (2003). Solvation of atomic metal cations within benzene and water clusters. Abstracts Of Papers Of The American Chemical Society 225, U525-U525, 2003.

Separation of isomers by dimer formation: isomerically pure benzene< sup>+</sup> and toluene< sup>+</sup> ions, and their dimers: ab initio calculations on (benzene)< sub> 2</sub>< sup>+</sup>

Journal Article ,
Separation of isomers by dimer formation: isomerically pure benzene< sup>+ and toluene< sup>+ ions, and their dimers: ab initio calculations on (benzene)< sub> 2< sup>+. (2003). Separation of isomers by dimer formation: isomerically pure benzene< sup>+ and toluene< sup>+ ions, and their dimers: ab initio calculations on (benzene)< sub> 2< sup>+. Chemical Physics Letters, 380, 21–28.

Separation of isomers by dimer formation: isomerically pure benzene+ and toluene+ ions, and their dimers: ab initio calculations on (benzene) 2+

Journal Article ,
Separation of isomers by dimer formation: isomerically pure benzene+ and toluene+ ions, and their dimers: ab initio calculations on (benzene) 2+. (2003). Separation of isomers by dimer formation: isomerically pure benzene+ and toluene+ ions, and their dimers: ab initio calculations on (benzene) 2+. Chemical Physics Letters, 380, 21–28.

Mass-selected ion mobility studies of the isomerization of the benzene radical cation and binding energy of the benzene dimer cation. Separation of isomeric ions by dimer formation

Journal Article ,
Mass-selected ion mobility studies of the isomerization of the benzene radical cation and binding energy of the benzene dimer cation. Separation of isomeric ions by dimer formation. (2003). Mass-selected ion mobility studies of the isomerization of the benzene radical cation and binding energy of the benzene dimer cation. Separation of isomeric ions by dimer formation. The Journal Of Physical Chemistry A 107 (38), 7656-7666, 2003, 107, 7656–7666.

Vapor phase growth and assembly of metallic, intermetallic, carbon, and silicon nanoparticle filaments

Journal Article ,
Vapor phase growth and assembly of metallic, intermetallic, carbon, and silicon nanoparticle filaments. (2003). Vapor phase growth and assembly of metallic, intermetallic, carbon, and silicon nanoparticle filaments. The Journal Of Physical Chemistry B 107 (13), 2882-2886, 2003, 107, 2882–2886.

Mass-selected ion mobility studies of the isomerization of the benzene radical cation and binding energy of the benzene dimer cation. Separation of isomeric ions by dimer formation

Journal Article ,
Mass-selected ion mobility studies of the isomerization of the benzene radical cation and binding energy of the benzene dimer cation. Separation of isomeric ions by dimer formation. (2003). Mass-selected ion mobility studies of the isomerization of the benzene radical cation and binding energy of the benzene dimer cation. Separation of isomeric ions by dimer formation. The Journal Of Physical Chemistry A, 107, 7656–7666.

Vapor phase growth and assembly of metallic, intermetallic, carbon, and silicon nanoparticle filaments

Journal Article ,
Vapor phase growth and assembly of metallic, intermetallic, carbon, and silicon nanoparticle filaments. (2003). Vapor phase growth and assembly of metallic, intermetallic, carbon, and silicon nanoparticle filaments. The Journal Of Physical Chemistry B, 107, 2882–2886.

Separation of isomers by dimer formation: isomerically pure benzene+ and toluene+ ions, and their dimers: ab initio calculations on (benzene) 2+

Journal Article ,
Separation of isomers by dimer formation: isomerically pure benzene+ and toluene+ ions, and their dimers: ab initio calculations on (benzene) 2+. (2003). Separation of isomers by dimer formation: isomerically pure benzene+ and toluene+ ions, and their dimers: ab initio calculations on (benzene) 2+. Chemical Physics Letters 380 (1-2), 21-28, 2003, 380, 21–28.

Solvated iron and nickel ions, Fe+ (H2O)(N), Ni+ (H2O)(N) using time of flight mass spectrometry (TOF-MS).

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Solvated iron and nickel ions, Fe+ (H2O)(N), Ni+ (H2O)(N) using time of flight mass spectrometry (TOF-MS). (2002). Solvated iron and nickel ions, Fe+ (H2O)(N), Ni+ (H2O)(N) using time of flight mass spectrometry (TOF-MS). Abstracts Of Papers Of The American Chemical Society 223, U295-U295, 2002.

Synthesis and characterization of copolymers of vinylidene chloride, methyl acrylate, and itaconic acid

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Synthesis and characterization of copolymers of vinylidene chloride, methyl acrylate, and itaconic acid. (1997). Synthesis and characterization of copolymers of vinylidene chloride, methyl acrylate, and itaconic acid. Tennessee State University, 1997.

Nanocomposite Copper Oxide Supported Mesoporous Zirconia: Physicochemical Properties

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Nanocomposite Copper Oxide Supported Mesoporous Zirconia: Physicochemical Properties. (1988). Nanocomposite Copper Oxide Supported Mesoporous Zirconia: Physicochemical Properties. Appl. Catal 36, 1-65, 1988, 36, 1–65.

Nanocomposite Copper Oxide Supported Mesoporous Zirconia: Physicochemical Properties

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Nanocomposite Copper Oxide Supported Mesoporous Zirconia: Physicochemical Properties. (1988). Nanocomposite Copper Oxide Supported Mesoporous Zirconia: Physicochemical Properties. Appl. Catal, 36, 1–65.

Thermo-Mechanically Reinforced Mesoporous Styrene-Co-Methyl Methacrylate-Graphene Composites for Produced Water Treatment

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Thermo-Mechanically Reinforced Mesoporous Styrene-Co-Methyl Methacrylate-Graphene Composites for Produced Water Treatment. Thermo-Mechanically Reinforced Mesoporous Styrene-Co-Methyl Methacrylate-Graphene Composites for Produced Water Treatment. Available At Ssrn 4207331, 0.

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Organic Chemistry II, (CHM 212)

 

CHM 212 Continuation of CHM 211. Nomenclature, properties, reactions and synthesis of conjugated dienes, aromatics, organometallics, alcohols, phenols, ethers, aldehydes and ketones, carboxylic acids and derivatives, and amines. Mechanisms include electrophilic aromatic substitution and nucleophilic addition. Carbohydrates, amino acids, proteins and nucleic acids. Laboratory stresses single and multi-step syntheses along with mass spectrometry, ultraviolet, and carbon-13 nuclear magnetic resonance spectroscopy and integrated spectral analysis.