Microwave- Assisted Synthesis of 1,3- Dimesitylimidazolinium Chloride Brittney Hutchinson Department of Chemistry, University of New Hampshire, Durham,

Slides:



Advertisements
Similar presentations
Modeling of Ru and Fe based olefin metathesis Michael T. Feldmann Richard P. Muller William A. Goddard, III Materials and Process Simulation Center, Caltech.
Advertisements

Results and Discussion The first reaction (A) to yield 2 proceeded via a radical mechanism with commercially available vinyltrimethylsilane, 1. After careful.
Organic Chemistry William H. Brown & Christopher S. Foote.
Redox Neutral Aminal Formation Steven Young Department of Chemistry, University of New Hampshire, Durham, NH November 5, 2013 Introduction: Zero valent.
Chem Carbenoids and Related Species In contrast to carbenes, the heavier group 14 analogues and numerous group 15 analogues have been known for.
Catalytic Cross-coupling Reactions with Unactivated Alkyl Electrophiles and Alkyl Nucleophiles Heng Su 04/11/2008 Department of Chemistry Brandeis University.
Reporter: Yu Ting Huang Advising Prof: Ru Jong Jeng 1.
Nickel(II) N-Heterocyclic Carbene Complexes
Alkylation by Asymmetric Phase- Transfer Catalysis 张文全.
Heterocyclic Chemistry
The application of alkaline metal(Ca, Sr, Ba) complex as catalyst in organic chemistry 张文全 1.
Synthesis of [MoCp(CO) 2 (COCH 3 )(P(n-Bu) 3 )] : Investigation of an Air-Sensitive Migratory-Insertion Acknowledgments I’d like to thank the Advanced.
Isomerization of Xylene Isomers Austin Power Department of Chemistry, University of New Hampshire, Durham, NH 12/5/13 Introduction Early after the discovery.
Further Attempts Towards the Synthesis of Benzo-Annelated Cross-Bridged Cyclam Synthesis of Cross-Bridged Benzocyclam The Department of Chemistry of the.
Chain Extension-Mannich Reactions with Sulfonyl Imines Acknowledgments This work would not have been possible without the help of Dr. Zercher, Deepthi.
1 Single electron transfer reaction involving 1,3-dicarbonyl compounds and its synthetic applications Reporter: Jie Yu Oct. 31, 2009.
An Unsaturated Nickel(0) NHC Catalyst: Facile Preparation and
化 学 系 Department of Chemistry Catellani Reaction
Synthetic Approach to 5,6-Benzo-1-azabicyclo[2.2.2]octan- 2-one: A Lactam having Zero Resonance Energy Meghan Tobin, Dr. Arthur Greenberg, Jessica Morgan.
N-Heterocyclic carbenes : A powerful tool in organic synthesis Thomas B UYCK PhD Student in Prof. Zhu Group, LSPN, EPFL Frontiers in Chemical Synthesis.
16. Chemistry of Benzene: Electrophilic Aromatic Substitution Part 1 Based on McMurry’s Organic Chemistry, 6 th edition, Chapter 16.
Chiral Concave N-Heterocyclic Carbenes 3 rd International Summer School “Supramolecular Systems in Chemistry and Biology“ Tim Reimers Kiel, GER.
Acknowledgments I would like to thank the Advanced Inorganic Lab Staff as well as the entire UNH Chemistry Department for funding. Introduction Electrochromic.
Heterocyclic compound
1 CATALYTIC ASYMMETRIC NOZAKI- HIYAMA-KISHI REACTION: ROLE OF ORGANOCHROMIUM COMPOUNDS AND NOVEL SALEN LIGANDS A RKAJYOTI C HAKRABARTY Prof. Uday Maitra’s.
Max Bilodeau Department of Chemistry, University of New Hampshire, Durham, NH December 1, 2013 Introduction Results and Discussion: Conclusions: Acknowledgements:
Molecular and Gold Nanoparticles Supported N-Heterocyclic Carbene Silver(I) Complexes – Synthesis, Characterization and Catalytic Applications 學 生 :王趙增.
1 Molecular and Gold Nanoparticles Supported N-Heterocyclic Carbene Silver(I) Complexes – Synthesis, Characterization and Catalytic Applications 學生 : 王趙增.
Chem 1140; Ring-Closing Metathesis (RCM) and Ring-Opening Metathesis (ROMP) Introduction RCM Cross-Metathesis ROMP.
Competitive Synthesis of Benzyl Naphthalenes David Waste Department of Chemistry, University of New Hampshire, Durham, NH December 5, 2013 Introduction:
Synthesis of novel polycyclic aromatic hydrocarbons by transannular cyclization of dehydrobenzoannulenes 今回私はデヒドロベンゾアヌレンの渡環環化による新奇な多環状芳香族化合物の合成というテーマで発表します.
Synthesis and Phosphine-Induced Migratory-Insertion Reactivity of CpMo(CO) 3 (CH 3 ) Mark F. Cashman, Luke Futon*, Roy Planalp* Department of Chemistry,
Adapted Zard Synthesis of Trifluoromethyl Ketones from Carboxylic Acids Brandon Mercer Department of Chemistry, University of New Hampshire, Durham, New.
Progress Towards the Synthesis of 4,5-Benzoxepin Derivatives for Use in Coupling Reactions Bryanna Dowcett, Arthur Greenberg, Holly Guevara
The Work Of Pr Karl A. Scheidt Group Department of Chemistry, Northwestern UniVersity, Evanston.
Recycling the Waste: The Development of a Catalytic Wittig Reaction Angew. Chem. Int. Ed. 2009, 48, 6836 –6839.
Conversion of Carbon Dioxide into Methanol with Silanes over N-Heterocyclic Carbene Catalysts Siti Nurhanna Riduan, Yugen Zhang,* and Jackie Y. Ying* Angew.
Ch 19 Reactions of Benzene 1. Give the products of the following electrophilic aromatic substitution reactions. Also show how the electrophile is generated.
Reporter: Yang Chao Supervisor: Prof. Yong Huang The Transformation of α ‑ Diazocarbonyl Compounds.
B-Protected Haloboronic Acids for Iterative Cross-Coupling Eric Guinto; TA: Deepthi Bhogadhi Department of Chemistry, University of New Hampshire, Durham,
Progress towards the Synthesis of 1-Benzoxepin; A Model Oxepin Substrate Ian Smith, Ryan Fitzgerald, Holly Guevara, Arthur Greenberg
A Photoluminescent Study of Copper (I) Complexes Containing NHC and Bis(N-heterocyclic) Ligands Robert Biro, Timur McArdle, Luke Fulton, Roy Planalp*
Chapter 12 Amines Suggested Problems: 24-6,30-32,34-5,36,38,50,54.
Organometallic Compounds
Sean Pierre-Louis, Marc Boudreau, Bill Butler
Energy Difference (kJ/mol)
Figure 1. Phenethylamine 1H FT-NMR Spectrum in CDCl3 at 400 MHz.
Development of New Arsenic Based Amidation Catalysts
Electrophilic substitution in pyrrole, furan and thiophene
Govt. engg. College, valsad Sub: Oc&up( )
CHM 4311.
Organic Chemistry Second Edition Chapter 23 David Klein Amines
Synthesis and Photocatalysis with Cobaloxime Derivative
Aromatization using gold catalysis
Novel Water-Soluble N-Heterocyclic Carbene
Place your Project Logo Here
Heterocyclic Chemistry
Formation of 4-nitro-2-acetoxy benzoic acid
Reporter: Sun Beiqi Supervisor: Prof. Mo Date: 4/8/2016.
Introduction Structure of the Carbonyl Group
Organometallic Compounds
Figure Number: 15-00CO Title: Molecules of Some Simple Aromatic Compounds Caption: Potential maps of molecules of benzene, pyrrole, and pyridine. Notes:
Results and Discussion:
Stability and Reactions of N-heterocyclic Carbenes
Synthesis of Heterocyclic Rings 5 (carbenes and nitrenes)
N-Heterocyclic Carbenes in Iron-Catalyzed Cross-Coupling Reactions
Heterocyclic Chemistry
Joey Mancinelli, Justin Cole, Erik Berda
Synthesis and Characterization of a
Joey Mancinelli, Justin Cole, Erik Berda
Presentation transcript:

Microwave- Assisted Synthesis of 1,3- Dimesitylimidazolinium Chloride Brittney Hutchinson Department of Chemistry, University of New Hampshire, Durham, NH 12/1/2013 Using commercially available reagents, a synthesis to 1,3- dimesitylimidazolinium chloride (3) was completed. 3 plays an integral part in carbene chemistry. N- heterocyclic carbene’s are being recognized as divalent carbons that play critical roles in organocatalysts, organometallic complexes, and nucleophilic reagents. The final reaction also makes use of microwave synthesis, a process that can accelerate a chemical reaction. 1 Scheme 1 represents the first reaction that took place over a 24 hour stir period. The combination of 2,4,6- trimethylaniline and glyoxal yielded N, N’-dimesitylethylenediimine (1) ( g) as a product. The product is then treated with a moderately strong base and this makes the stable salt N, N’- dimesitylethylenediamine dihydrochloride, seen at the end of scheme 2. The salt (2) ( g) is used in a microwave reaction to give the final product, 1,3- dimesitylimidazolinium chloride (3) (0.115 g), and can be found at the end of scheme 3. The final product is known as a carbene. This carbene is able to participate in catalytic chemistry. It is most closely associated with being a ligand on Grubb’s catalyst with a couple of steps. 1 Carbene’s are sp 2 hybridized. They become increasingly stable when they are put in aromatic rings. This means that the one made at the end of scheme 3 is very stable, not only is it part of a 5 membered 6π electron system with the nitrogen's, but it is between two aromatic 6 membered rings 3 Since carbene’s tend to be very reactive they are good in nucleophilic substitution chemistry. 2 This experiment ran with very little to no problems. Based on a three week period every step was able to be completed without rushing. All three reactions produced high yields (percentages could not be made due to product still being wet). There was left over product from all three scheme reactions. All the reagents were used without purification from the manufactures. Professor Gary Wiseman for the idea and reference of this project and Sarah Joiner for the Organic laboratory help. 1 H NMR of 1 1 H NMR (400 MHz, CDCl 3 ) δ: 2.16 (s, 12 H), 2.29 (s, 6 H), 6.91 (s, 4 H), 8.10 (s, 2 H). 1 H NMR of 2 1 H NMR (400 MHz, DMSO) δ: 2.25 (s, 6 H), 2.48 (s, 12 H), 3.71 (s, 4 H), 6.99 (s, 4 H). 1 H NMR of 3 1 H NMR (400 MHz, CDCl 3 ) δ: 2.24 (s, 6 H), 2.32 (s, 12 H), 4.47 (s, 4 H), 6.86 (s, 4 H), 9.69 (d, 1 H). 1. Delaude, L.; Hans, M.; Chowdhury, S. Microwave- Assisted Synthesis of 1,3-Dimesitylimidazolinium Chloride. Org. Synth. 2010, 87, 77. 2, Nair, V., Bindu, S. and Sreekumar, V. N-Heterocyclic Carbenes: Reagents, Not Just Ligands!. Angew. Chem. Int. Ed. 2004, 43: 5130– Carey, Francis A., Giuliano, Robert M.. Organic Chemistry, 8 th ed.; McGraw Hill: 2011; pp Chemistry for N- heterocyclic carbene’s (NHC) is very active. They are very reactive, so a good place to go into is looking more at the catalytic properties as a ligand. This can be extended into the nucleophilic substitution reactions as was stated earlier in the introduction. 2 Introduction: Results and Discussion: Conclusions: Future Work : References: Acknowledgements: