Synthesizing Strong Donor Macrocyclic Tetracarbene Metal Complexes for Catalytic Aziridination

Synthesizing Strong Donor Macrocyclic Tetracarbene Metal Complexes for Catalytic Aziridination
Author: Steven Alan Cramer
Publisher:
Total Pages: 0
Release: 2014
Genre: Ligand binding (Biochemistry)
ISBN:

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A small ringed macrocyclic tetracarbene ligand was developed due to the inherent ability of N-heterocyclic carbenes (NHCs) to stabilize high oxidation states of transition metals. This new strong donor ligand was prepared by first synthesizing an 18-atom ringed macrocyclic tetraimidazolium ligand precursor. The tetraimidazolium can be prepared by a two-step procedure. This ligand precursor was deprotonated to prepare a monomeric platinum tetracarbene complex. A new iron macrocyclic tetra-carbene complex was synthesized by an in situ strong base deprotonation strategy of the ligand precursor. The iron tetracarbene complex was found to catalyze the aziridination of a wide array of functionalized aryl azides and a variety of substituted aliphatic alkenes, including tetra-substituted. The aziridination intermediate was probed by mass spectrometry and found to likely be and iron(IV) imido. Further investigation of this intermediate discovered that the an iron(IV) tetrazene forms when excess aryl azide was added, probably by a 1,3-cycloaddition of an additional equivalent of azide to an imido. Utilizing single crystal X-ray diffraction, NMR spectroscopy, and Mossbauer spectroscopy the metal center was formally assigned as a low spin (S = 0) iron(IV). Additional reactivity studies indicates this tetrazene is capable of performing aziridination and therefore is an additional reaction pathway in the catalytic cycle. A large disadvantage of the aforementioned iron tetracarbene catalyst is poor yield. To overcome low yields and to prepare several transition metal tetracarbene complexes, a dimeric macrocyclic tetracarbene silver complex was synthesized. This complex was shown to successfully extend transmetallation of polydentate NHCs beyond bidentate NHCs. The silver complex was utilized in the preparation of a variety of mononuclear tetracarbene complexes ranging from early first row to late third row transition metals in moderate to high. In an attempt to move toward improving solubility of the tetracarbene catalysts, a second generation variant with two borate moieties in the ligand backbone was utilized. With this dianionic 18-atom macrocyclic tetracarbene ligand, the first tetracarbene complexes of Group 13 and 14 metals were synthesized. The tin, indium, and aluminium tetracarbene complexes are structurally analogous to their catalytically active porphyrin or salen analogues.

Catalytic Aziridination with a Borate-containing N-heterocyclic Tetracarbene Iron Complex

Catalytic Aziridination with a Borate-containing N-heterocyclic Tetracarbene Iron Complex
Author: Preeti Pradip Chandrachud
Publisher:
Total Pages: 163
Release: 2016
Genre: Aziridines
ISBN:

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Aziridines, the nitrogen analog of epoxides, are an important class of compounds. They are present in many biologically active compounds having antibacterial and antitumor properties. Along with biological significance, it can also be considered as a synthetic tool for various functional group transformations. Being an important functional group we focused on the development of synthetic methodology using alkenes as substrates and organic azides as the nitrene source [C2 (carbon2)+ N1 (nitrogen1) addition reaction]. For the potential use as an aziridination catalyst a macrocyclic N-heterocyclic tetracarbene (NHC) ligand system was developed. First, the neutral NHC ligand was used to synthesize ruthenium(II) complex that was found catalytically inactive for aziridination. Due to the limitations such as poor solubility, the second generation, borate-containing dianionic NHC ligand was developed. Using this 18-atom ring ligand cobalt(II) and manganese(III) and iron(III) complexes with neutral charge were synthesized. Further, iron(III) complex was reduced to form the square planar iron(II) neutral complex. This complex successfully performed fully aliphatic aziridination involving functional group tolerance. In order to check the versatility of the catalyst it was also tested with aliphatic alkenes and aryl azide, which resulted in high yields of corresponding aziridines. Finally, the catalyst successfully performed intramolecular C2 + N1 aziridination to form five- and six-membered bicyclic aziridines. Another aspect of the project was to investigate the mechanism of the catalytic C2 + N1 aziridination reaction for this tetracarbene system. We were able to isolate an iron(IV) tetrazene complex that support the argument of a reactive iron(IV) imide as an intermediate in the catalytic cycle. In order to explore the reaction pathway from imide to aziridine we carried out reactions with p-tolyl azide in presence of cis- and trans- alkenes that formed the syn- and anti- aziridines. This observation suggested the formation of radical intermediate, which was also supported by DFT [density functional theory] calculations. Lastly, we also synthesized N-carbamate aziridines from carbamate azides with boc-, fmoc-, and cbz- groups and aliphatic alkenes. Deprotection and nuclephilic ring opening reactions on these carbamate aziridines will be carried out in future.

Chiral Iron Pyridine Complexes and Ruthenium Complexes with N-Heterocyclic Carbene and Macrocyclic (N, O) Donor Atom Ligands

Chiral Iron Pyridine Complexes and Ruthenium Complexes with N-Heterocyclic Carbene and Macrocyclic (N, O) Donor Atom Ligands
Author: Kar-Yee Lam
Publisher:
Total Pages:
Release: 2017-01-26
Genre:
ISBN: 9781361034422

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This dissertation, "Chiral Iron Pyridine Complexes and Ruthenium Complexes With N-heterocyclic Carbene and Macrocyclic (N, O) Donor Atom Ligands: Synthesis, Catalytic Activity and Biological Studies" by Kar-yee, Lam, 林嘉儀, was obtained from The University of Hong Kong (Pokfulam, Hong Kong) and is being sold pursuant to Creative Commons: Attribution 3.0 Hong Kong License. The content of this dissertation has not been altered in any way. We have altered the formatting in order to facilitate the ease of printing and reading of the dissertation. All rights not granted by the above license are retained by the author. Abstract: Abstract of thesis entitled CHIRAL IRON PYRIDINE COMPLEXES AND RUTHENIUM COMPLEXES WITH N-HETEROCYCLIC CARBENE AND MACROCYCLIC(N, O) DONOR ATOM LIGANDS: SYNTHESIS, CATALYTIC ACTIVITY AND BIOLOGICAL STUDIES Submitted by Lam Kar Yee For the degree of Doctor of Philosophy at The University of Hong Kong in April 2016 Transition metal complexes are widely applied as catalysts for organic transformation reactions such as the oxygen atom and nitrene transfer reactions and there is a growing interest to develop the medicinal applications of transition metal complexes. The studies of reactive metal-oxo and metal-nitrene intermediates are important in probing the underlying reaction mechanisms. This thesis is comprised of three main parts. In the first part, iron complexes with chiral pyridine ligands, such as 4′,6-disubstituted 2,2′ 6′,2″-terpyridine (NNN ) and 4′,6,6″-trisubstituted 2,2′ 6′,2″''-terpyridine (NNN ), were studied for their catalytic activities in asymmetric epoxidation, aziridination, amidation and sulfimidation reactions. The Fe-NNN complex catalyzed intermolecular nitrene transfer/CN bond formation reactions of styrenes with PhINTs in moderate product yields. For the asymmetric intramolecular amidation, the Fe-NNN complex can catalyze intramolecular C-N bond formation using PhI(OAc) as oxidant to form five- or six-membered ring products. The highest product yield obtained was 91 %. The complete conversion of para-substituted phenyl methyl sulfides to corresponding sulfimides was observed by using the Fe-NNN 1 2 complex as catalyst. Both the Fe-NNN and Fe-NNN complexes catalyzed asymmetric epoxidation of styrene using PhIO as oxidant at 0 C. The reaction intermediates of the nitrene/oxygen transfer reactions were studied by ESI-MS and high-valent iron-ligand multiple bonded species are proposed to be the reaction intermediates. In the second part, ruthenium pincer N-heterocyclic carbene (CNC) complexes were prepared and characterized by spectroscopic means and X-ray crystallography. II 2+ Complex [Ru (CNC)(bpy)(MeCN)], in which the CNC ligand adopts a fac-coordination mode and contains reactive CH bond of bridging methylene group, was found to react with PhINTs to result in the formation of a new CN bond and cleavage of one existing NC(methylene) bond of the CNC ligand, as revealed by X-ray crystal structure determination of the ruthenium complex product. The reaction 2+ of [Ru(CNC)(bpy)(MeCN)] with PhINTs was monitored by ESI-MS, UV-vis, and NMR spectroscopy; a paramagnetic Ru(III)-amido complex was isolated, which apparently resulted from intramolecular imido/nitrene CH insertion of a Ru(IV)-imido/nitrene intermediate and was found to undergo the observed CN bond cleavage. Such type of CN bond cleavage induced by metal-mediated imido/nitrene insertion is unprecedented in literature. The final part of this thesis is the study of the anti-angiogenic and anti-metastatic properties of the ruthenium complexes. Ruthenium complexes with different oxidation states (+2 and +3) and ligands (pincer NHC and macrocyclic (N, O) donor atom ligands) were examined for their cytotoxicity and anti-angiogenesis activity. III Among the complexes studied, [Ru (N O )Cl ]Cl (Ru-1) displays promising 2 2 2 inhibi

N4-Macrocyclic Metal Complexes

N4-Macrocyclic Metal Complexes
Author: J.H. Zagal
Publisher: Springer Science & Business Media
Total Pages: 828
Release: 2006-07-19
Genre: Science
ISBN: 038728429X

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In response to significant developments in sensor science and technology, this book offers insight into the various extended applications and developments of N4 macrocycle complexes in biomimetic electrocatalysis. Covers chemical properties of electrocatalysts, use of specific species, and analytical applications.

Developing 16- and 18-atom Ringed Macrocyclic Tetracarbene Complexes

Developing 16- and 18-atom Ringed Macrocyclic Tetracarbene Complexes
Author: Heather Marie Bass
Publisher:
Total Pages: 133
Release: 2013
Genre: Chemistry, Inorganic
ISBN:

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Stabilizing metal-ligand multiple bonds is important for the understanding of biological intermediates, as well as, for their use in group transfer reactions. Two considerations to make when developing a ligand system to support metal-ligand multiple bonds are the strength of the ligand and the symmetry of the ligand. Herein, our group has proposed a class of four-coordinate, strong [sigma]-donor ligands by synthesizing macrocyclic tetraimidazoliums that form tetracarbenes upon deprotonation. By examining group theory, these systems should allow for the formation of complexes with metal-ligand multiple bonds in a bent square pyramidal geometry that exhibit high oxidation states and novel spin states. The first step in accomplishing this goal was the synthesis of a neutral, 18-atom ringed macrocyclic tetraimidazolium system. By employing a weak base deprotonation strategy, we were able to form a platinum tetracarbene complex. Unlike previous macrocyclic tetracarbene systems, our complex was rigid in solution, allowing for accessible apical positions. A major drawback to this first neutral, 18-atom ringed macrocyclic tetracarbene system was its inherent insolubility in nonpolar solvents. In order to compensate for this shortcoming, we added two borate moieties to second generation macrocyclic tetraimidazoliums, leading to dianionic ligands upon deprotonation. These three additional systems included two 16-atom ringed tetraimidazoliums and one 18-atom ringed tetraimidazolium. While results of forming metal complexes with the 16-atom ringed variants are incomplete, we were able to form metal complexes with the 18-atom ringed, borate-based tetracarbene ligand. Not only did the complexes formed by the 18-atom ringed, borate-based tetracarbene ligand have enhanced solubility in solvents such as toluene, but preliminary results suggest they may stabilize metal-ligand multiple bonds.

Organic Synthesis

Organic Synthesis
Author: Belakatte Parameshwarappa Nandeshwarappa
Publisher: BoD – Books on Demand
Total Pages: 250
Release: 2020-05-27
Genre: Science
ISBN: 1789859433

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The book ‘Organic Synthesis - A Nascent Relook’ is a compendium of the recent progress in all aspects of organic chemistry including bioorganic chemistry, organo-metallic chemistry, asymmetric synthesis, heterocyclic chemistry, natural product chemistry, catalytic, green chemistry and medicinal chemistry, polymer chemistry, as well as analytical methods in organic chemistry. The book presents the latest developments in these fields. The chapters are written by chosen experts who are internationally known for their eminent research contributions. Organic synthesis is the complete chemical synthesis of a target molecule. In this book, special emphasis is given to the synthesis of various bioactive heterocycles. Careful selection of various topics in this book will serve the rightful purpose for the chemistry community and the industrial houses at all levels.

Iron Catalysis

Iron Catalysis
Author: Bernd Plietker
Publisher: Springer Science & Business Media
Total Pages: 227
Release: 2011-01-05
Genre: Science
ISBN: 3642146694

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Juan I. Padrón and Víctor S. Martín: Catalysis by means of Fe-based Lewis acids; Hiroshi Nakazawa*, Masumi Itazaki: Fe–H Complexes in Catalysis; Kristin Schröder, Kathrin Junge, Bianca Bitterlich, and Matthias Beller: Fe-catalyzed Oxidation Reactions of Olefins, Alkanes and Alcohols: Involvement of Oxo- and Peroxo Complexes; Chi-Ming Che, Cong-Ying Zhou, Ella Lai-Ming Wong: Catalysis by Fe=X Complexes (X=NR, CR2); René Peters, Daniel F. Fischer and Sascha Jautze: Ferrocene and Half Sandwich Complexes as Catalysts with Iron Participation; Markus Jegelka, Bernd Plietker: Catalysis by Means of Complex Ferrates.

Iron Catalysis in Organic Chemistry

Iron Catalysis in Organic Chemistry
Author: Bernd Plietker
Publisher: John Wiley & Sons
Total Pages: 295
Release: 2008-09-08
Genre: Science
ISBN: 3527623280

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This first comprehensive book to cover this exciting field also deals with the biological aspects, such as enzymes with iron. Following an introduction, this handy reference and handbook goes on to deal with reductions, oxidations of C, H- and C=C bonds, oxidative allylic oxygenation and amination, the oxidation of heteroatoms, cross coupling reactions, aromatic and nucleophilic substitutions, addition to carbonyl compounds, and cyclisations as well as ring opening reactions. The chapters are clearly classified according to the reaction type, allowing readers to quickly locate the desired information.

Aziridines and Epoxides in Organic Synthesis

Aziridines and Epoxides in Organic Synthesis
Author: Andrei K. Yudin
Publisher: John Wiley & Sons
Total Pages: 532
Release: 2006-02-20
Genre: Science
ISBN: 9783527312139

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Aziridines and epoxides are among the most widely used intermediates in organic synthesis, acting as precursors to complex molecules due to the strains incorporated in their skeletons. Besides their importance as reactive intermediates, many biologically active compounds also contain these three-membered rings. Filling a gap in the literature, this clearly structured book presents the much needed information in a compact and concise way. The renowned editor has succeeded in gathering together excellent authors to cover synthesis, applications, and the biological aspects in equal depth. Divided roughly equally between aziridines and epoxides, the twelve chapters discuss: * Synthesis of aziridines * Nucleophilic ring-opening of aziridines and epoxides * Organic synthesis with aziridine building blocks * Vinyl aziridines in organic synthesis * Diastereoselective aziridination reagents * Synthetic aspects of aziridinomitocene chemistry * Biosynthesis of biologically important aziridines * Organic catalysis of epoxide and aziridine ring formation * Metal-mediated synthesis of epoxides * Asymmetric epoxide ring opening chemistry * Epoxides in complex molecule synthesis * Biological activity of epoxide-containing molecules A high-quality reference manual for academic and industrial chemists alike.

Industrial Applications of Homogeneous Catalysis

Industrial Applications of Homogeneous Catalysis
Author: A. Mortreux
Publisher: Springer Science & Business Media
Total Pages: 371
Release: 2012-12-06
Genre: Science
ISBN: 9400938977

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Catalysts are now widely used in both laboratory and industrial-scale chemistry. Indeed, it is hard to find any complex synthesis or industrial process that does not, at some stage, utilize a catalytic reaction. The development of homogeneous transition metal catalysts on the laboratory scale has demonstrated that these systems can be far superior to the equivalent heterogeneous systems, at least in terms of selectivity. is an increasing interest in this field of research from both an Thus, there academic and industrial point of view. In connection with the rapid developments in this area, four universities from the E.E.C (Aachen, FRG; Liege, Belgium; Milan, Italy; and Lille, France) have collaborated to organise a series of seminars for high-level students and researchers. These meetings have been sponsored by the Commission of the E.E.C and state organizations. The most recent of these meetings was held in Lille in September 1985 and this book contains updated and expanded presentations of most of the lectures given there. These lectures are concerned with the field of homogeneous transition metal catalysis and its application to the synthesis of organic intermediates and fine chemicals from an academic and industrial viewpoint. The continuing petroleum crisis which began in the early 1970s has given rise to the need to develop new feedstocks for the chemical industry.