Big Chemical Encyclopedia

Chemical substances, components, reactions, process design ...

Articles Figures Tables About

With imines

Diketene reacts with imines to give l,3-oxa2inones (16) (105). This reaction has been used in the synthesis of the tranquili2er Keta2olam... [Pg.478]

The interaction of acid chlorides (167 X = Cl) with imines in the presence of bases such as triethylamine may involve prior formation of a ketene followed by cycloaddition to the imine, but in many cases it is considered to involve interaction of the imine with the acid chloride to give an immonium ion (168). This is then cyclized by deprotonation under the influence of the base. Clearly, the distinction between these routes is a rather fine one and the mechanism involved in a particular case may well depend on the reactants and the timing of mixing. Particularly important acid chlorides are azidoacetyl chloride and phthalimidoacetyl chloride, which provide access to /3-lactams with a nitrogen substituent in the 3-position as found in the penicillins and cephalosporins. [Pg.260]

The reactions of ketenes or ketene equivalents with imines, discussed above, all involve the imine acting as nucleophile. Azetidin-2-ones can also be produced by nucleophilic attack of enolate anions derived from the acetic acid derivative on the electrophilic carbon of the imine followed by cyclization. The reaction of Reformatsky reagents, for example... [Pg.260]

At Smith Kline French a general approach to cephalosporin and penicillin nuclear analogs was developed that utilizes a monocyclic /3-lactam (59) with the correct cis stereochemistry as a key intermediate. This is prepared by reaction of the mixed anhydride of azidoacetic acid and trifluoroacetic acid with imine (58) followed by oxidative removal of the dimethoxybenzyl group. This product could be further elaborated to intermediate (60) which, on reaction with a -bromoketones, provides isocephalosporins (61). These nuclear analogs displayed antibacterial properties similar to cephalosporins (b-79MI51000). [Pg.295]

With imines, salts formation is accompanied by characteristic spectral changes (153) (a) a bathochromic shift in the ultraviolet region by as much as 50 m/i, according to compound type and to properties of any auxochrome present, and (b) a high frequency shift of the... [Pg.275]

Synthesis and chemistry of substituted l-azabicyclo[1.1.0]butanes 97SL1029. Synthesis of aziridines via stereoselective reactions with imines 99PAC1033. [Pg.243]

Silylketenes in formation of (3-lactones and (3-lactams 98JCS(P1)2105. Syntheses of (3-lactams, (3-lactones, and 1,3- and 1,4-diazetidinediones by pho-tochemically induced cycloaddition reactions of chromium carbene complexes with imines, aldehydes, and azo compounds 97T4105. [Pg.245]

Various types of alkylpytroles are prepared under mild conditions by reacting nitroalkenes with Imines in the presence of SmfOi-Pri- fEq. 10.11. Thus, the Grob-Camenish type reacdon is accelerated by samarium catalysts. [Pg.328]

The intramolecular Heck reaction presented in Scheme 8 is also interesting and worthy of comment. Rawal s potentially general strategy for the stereocontrolled synthesis of the Strychnos alkaloids is predicated on the palladium-mediated intramolecular Heck reaction. In a concise synthesis of ( )-dehydrotubifoline [( )-40],22 Rawal et al. accomplished the conversion of compound 36 to the natural product under the conditions of Jeffery.23 In this ring-forming reaction, the a-alkenylpalladium(n) complex formed in the initial oxidative addition step engages the proximate cyclohexene double bond in a Heck cyclization, affording enamine 39 after syn /2-hydride elimination. The latter substance is a participant in a tautomeric equilibrium with imine ( )-40, which happens to be shifted substantially in favor of ( )-40. [Pg.574]

Synthesis of aziridines by treatment of carbenes with imines was reported by Jacobsen [56]. A metallocarbene 104 derived from ethyl diazoacetate and copper fluorophosphate was treated with N-arylaldimines to form aziridines with reasonable diastereoselectivities (>10 1 in favor of cis) but with low enantioselectivities (about 44% ee). This was shown to result from a competitive achiral reaction path-... [Pg.26]

The diastercosclectivity in the reaction of a-silylallenic organometallics with imines has been studied... [Pg.756]

Since /1-lactams can be prepared via reactions of ester enolates with imines, these reactions are of great interest for synthetic and medicinal chemists. The synthesis of naturally occurring antibiotics and other physiologically active //-lactams is an objective of much current work. Though the stereocenters in those reactions are often established by addition of enolates to imines, they are discussed in Section D.1.6.1.3. In this section, only some basic results concerning //-lactams are presented. [Pg.758]

Table 10 shows examples of. vvn-sclcctive enolate condensations with imines using different types of enolates. All enolates used in these experiments were prepared based on the corresponding lithium enolate by treatment with different Lewis acids, where the lithium enolates themselves were generated with lithium diisopropylamide (LDA) at — 78 °C. [Pg.760]

Diastereoselection is also observed in the catalyzed [titanium tetrachloride (TiCI4)13, trimethyl-silyltrifluoromethanesulfonate (TMSTf)l4, zinc iodide (Znl2)15] reactions of silyl ketene acetal 1 with imines 2, The ami configuration of the product 3 dominates. [Pg.762]

Addition of Methyl Sulfoxides Reactions with Imines... [Pg.770]

Abstract The photoinduced reactions of metal carbene complexes, particularly Group 6 Fischer carbenes, are comprehensively presented in this chapter with a complete listing of published examples. A majority of these processes involve CO insertion to produce species that have ketene-like reactivity. Cyclo addition reactions presented include reaction with imines to form /1-lactams, with alkenes to form cyclobutanones, with aldehydes to form /1-lactones, and with azoarenes to form diazetidinones. Photoinduced benzannulation processes are included. Reactions involving nucleophilic attack to form esters, amino acids, peptides, allenes, acylated arenes, and aza-Cope rearrangement products are detailed. A number of photoinduced reactions of carbenes do not involve CO insertion. These include reactions with sulfur ylides and sulfilimines, cyclopropanation, 1,3-dipolar cycloadditions, and acyl migrations. [Pg.157]

The reaction of ketenes (usually formed from treatment of acid chlorides with tertiary amines) with imines is a classic way to form /J-lactams [17,18]. Although widely used, it suffers limitations in scope and efficiency, since free ketenes are... [Pg.159]

Although the photodriven reactions of chromium carbene complexes with imines superficially resemble those of free ketenes, there are major differences. The optically active oxazolidine carbene (Table 5) gave excellent yields and high ee values when allowed to react with imidates, oxazines, thiazines, and... [Pg.165]

Table 4 Reaction of chromium aminocarbenes with imines ... Table 4 Reaction of chromium aminocarbenes with imines ...
Pyrrolocarbenes produced low yields of /J-lactams in photodriven reactions with imines [52], while o-acylimidatocarbene complexes gave a mixture of compounds with /J-lactams being minor components [53]. [Pg.167]

Finally, chromium imine carbenes underwent photoreaction with imines to give azadienes (metathesis) (Eq. 36), with azobenzene to give both metathesis and cycloaddition products (Eq. 37), and with ketones to give oxazolines... [Pg.194]

Lopez R, Sordo TL, Sordo JA, Gonzalez J (1993) J Org Chem 58 7036 Cossio F, Ugalde JM, Lopez X, Lecea B, Palomo C (1993) J Am Chem Soc 115 995 Cossio FP, Arrieta A, Lecea B, Ugalde JM (1994) J Am Chem Soc 116 2085 GerrietaA,Lecea B, Cossio FP (1998) J Org Chem 63 5869. For a theoretical treatment of the photoreaction of chromium carbene complexes with imines see Arrieta A, Cossio FP, Fernandez I, Gomez-Gallego M, Lecea B, Mancheno MJ, Sierra MA (2000) J Am Chem Soc 122 11509... [Pg.199]

An alternative preparation of aziridines reacts an alkene with iodine and chloramine-T (see p. 1056) generating the corresponding A-tosyl aziridine. Bromamine-T (TsNBr Na ) has been used in a similar manner." Diazoalkanes react with imines to give aziridines." Another useful reagent is NsN=IPh, which reacts with alkenes in the presence of rhodium compounds or Cu(OTf)2 to give N—Ns aziridines. Manganese salen catalysts have also been used with this reagent. ... [Pg.1058]

The reactive compound chlorosulfonyl isocyanate (ClSOaNCO, forms P-lactams even with unactivated alkenes, as well as with imines, allenes, conjugated dienes, and cyclopropenes. With microwave irradiation, alkyl isocyanates also... [Pg.1251]

Allylic phosphonate esters react with imines, in the presence of a palladium catalyst, to give P-lactams. " Alkynyl reagents such as BuC=CO Li react with imines to form P-lactams. [Pg.1251]


See other pages where With imines is mentioned: [Pg.132]    [Pg.261]    [Pg.263]    [Pg.509]    [Pg.526]    [Pg.621]    [Pg.693]    [Pg.75]    [Pg.77]    [Pg.132]    [Pg.472]    [Pg.125]    [Pg.22]    [Pg.59]    [Pg.81]    [Pg.91]    [Pg.105]    [Pg.157]    [Pg.159]    [Pg.188]    [Pg.1022]    [Pg.1191]   
See also in sourсe #XX -- [ Pg.1216 ]




SEARCH



1,2-Diamines with imines

1,3-Oxazolium 5-imines with acids

1,3-dipolar cycloaddition reactions with nitrile imines

1.2- Dithiol-3-imines, reaction with

1.3- dipolar cycloaddition reactions with azomethine imines

12+1 [Cycloaddition reactions, of Brook-type with imines

2.4- Pentadienoic acid Diels-Alder reactions with imines

74 nitrosyl chloride, reaction with imines

9-Borabicyclononane, crotylNMR reaction with imines

9-Borabicyclononane, pent-3-en-2-ylreactions with imines

9-Borabicyclononane, pent-3-en-2-ylreactions with imines syn-anti selectivity

Acetals formation, comparison with imine

Acetals, silylketene reaction with imines

Acyl with imines

Aldehydes imine formation with primary

Aldehydes, reaction with imine carbanions

Alkenes, reaction with azomethine imines

Allenes, cycloadditions with imine

Allenic organometallic compounds reactions with imines

Allyl organometallic compounds reactions with imines

Aluminum, crotylreaction with imines

Aluminum, crotylreaction with imines syn-anti selectivity

Aluminum, crotylreaction with imines synthesis

Amines, organometallic compounds with imines

Amino acids reaction of imines with allyl organometallic

Ammonia reaction with aldehydes to form imine

Asymmetric Conjugate Addition with Carbonyls and Imines

Aziridines, vinylsynthesis reaction of chloro allyllithium with imines

Azomethine imines with allenoates

Azomethine imines, cycloaddition with sydnones

Benzyne reaction with imines

Borane, allylreaction with imines

Borane, crotylreactions with imines

Borane, crotylreactions with imines synthesis

Borohydride, sodium reaction with enamines, imines

Borohydride, sodium reaction with imines

Boronic acid, allylesters reactions with imines

Bronsted acid-catalyzed reactions with imines

Butyllithium, reaction with imines

Butyric acid, triisopropylsiloxycycloaddition with imines

Carbanions with imines

Chiral imine acetal with lithium enolate

Chlorosulfonyl isocyanate reaction with imines

Crotyl organometallic compounds reactions with imines

Cyclization, radicals with imines

Cycloaddition of chromium-carbene complexes with imines

Cycloaddition reactions with imines

Cycloaddition with azomethine imines

Cycloadditions of Ketenes with Imines

Cycloadditions with imine dienophiles

Diastereoselectivity ester, with imines

Diazoalkanes reaction with imines

Diels-Alder reaction with imines

Dihydropyridine, imine reactions with

Enol silanes reaction with imines

Enolate anions, esters, reaction with imines

Enolates, boron reactions with imines

Esters, conjugated, reaction with imine-amines

Esters, conjugated, reaction with imines

Friedel-Crafts acylation, with imines

Furans reaction with imines

Grignard reagents reaction with imines

Highly Active Ethene Polymerization Catalysts with Unusual Imine Ligands

Homoallylamines allyl organometallic reagent reactions with imines

Imine oxidation with peroxy acids

Imine reaction with allylboronates

Imine reaction with boronic acid derivative

Imine with boron Lewis acids

Imine with diketene

Imine, benzophenone, reaction with

Imines (cont reactions with unsaturated silanes

Imines 2+2] cycloaddition reactions with ketenes

Imines carbanions, reaction with

Imines comparison with

Imines condensation with active

Imines cross-coupling with

Imines equilibrium with enamines

Imines intramolecular cyclization with

Imines lactams, with rearrangement

Imines reaction with amines

Imines reaction with carbene complexes

Imines reaction with cyanide

Imines reaction with ketene complexes

Imines reaction with ketenes

Imines reaction with propargyl complexes

Imines reactions with Fischer carbene complexes

Imines reactions with a-silylbenzylic anions

Imines reactions with acid chlorides

Imines reactions with alkynes

Imines reactions with allenic titanium reagents

Imines reactions with allenylsilanes

Imines reactions with allyl organometallic reagents

Imines reactions with allylboronates

Imines reactions with carboxylic acid derivatives

Imines reactions with cyclopropenones

Imines reactions with enolates

Imines reactions with highly acidic active methylene

Imines reactions with ketones

Imines reactions with lithiated

Imines reactions with organocopper complexes

Imines reactions with organometallics

Imines reactions with pent-3-ene-2-yl-9-borabicyclononane

Imines reactions with type I crotyl metallics

Imines reactions with ylides

Imines reduction with complex metal hydrides

Imines tautomerism with enamines

Imines variation of yield with metal

Imines with Reformatsky reagents

Imines with aldehydes

Imines with alkenes

Imines with alkynes

Imines with allenes

Imines with allyl silanes

Imines with amines

Imines with dienes

Imines with indoles

Imines with ketene acetals

Imines with ketenes

Imines with ketones

Imines with mercapto acids

Imines with organometallic

Imines with organometallic reagents

Imines with phosphoranes

Imines with sulfenes

Imines with terminal alkynes

Imines with trichlorosilane reductant

Imines, (2 +• 2] cycloaddition with sulfenes

Imines, N-acylreactions with organocopper complexes

Imines, N-acylreactions with organocopper complexes reactivity

Imines, N-trimethylsilylin situ synthesis reactions with organometallic compounds

Imines, alkylation comparison with

Imines, alkylation reaction with cyanide

Imines, alternating copolymerization with

Imines, reaction with ester enolates

Imines, reaction with ketene acetals

Imines, reaction with malonic acid enolates

Imines, reaction with peroxyacids

Imines, reaction with pyruvic acid

Imines, reactions with silenes

Imines, reactions with silyl enol ethers

Imines, reactions with silyl enolates

Imines, reactions with silyl ketene acetals

Imines, with carboxylic acids

Imines, with carboxylic acids 2 + 2]-cycloaddition

Imines, with carboxylic acids compounds

Imines, with carboxylic acids isocyanate

Ketene acetals, bis reaction with imines

Ketenes 2+2] cycloaddition with imines

Ketenes, cycloadditions with imines

Ketones and aldehydes, distinguishing from reaction with amines to form imine

Ketones cyclic imines, reactions with

Ketones cycloadditions with imines

Ketones imine formation with primary

Ketones, catalytic condensation with imines

Ketones, reaction with imine carbanions

Lactams imines, cyclic, with

Lithium ester enolates, condensation with imines

Lithium, crotylconfigurational stability reaction with imines

Lithium, perfluoroalkylreactions with imines

Lithium, perfluoroalkylreactions with imines Lewis acid pretreatment

Magnesium, crotylreaction with imines

Magnesium, crotylreaction with imines structure

Magnesium, crotylreaction with imines syn-anti selectivity

Miscellaneous reactions reaction with imines

Nitrile imines, cycloaddition with

Organolithium with imines

Organomagnesium reagents reactions with imines

Organometallic compounds with imines

Organometallic compounds, reactions with imines

Organozinc reagents reactions with imines

Propargyl organometallic compounds reactions with imines

Pyrroles with imines

Rare Earth Complexes with Imine Type Ligands

Reaction of enolates with iminium ions or imines

Reaction with Carbonyl Compounds 2 Imines

Reaction with Primary Amines Imines

Reaction with azomethine imines

Reaction with imines

Reactions of Chiral Imines with Dienes

Reactions of Chiral Imines with Heteroatom-substituted Dienes

Reactions of Imines with Ketenes (Staudinger Reaction)

Reactions of imines with dienes

Reactions of imines with dienes or alkenes

Reactions of imines with silyl enolates

Reactions with Amines, Imines, Nitroso Oxide, and Protic Solvents

Reduction of Imines with Trichlorosilane Catalyzed by Chiral Lewis Bases

Reformatsky reaction with imines

Silenes with imines

Silyl anions reaction with imines

Silyl ketene acetals, chiral reaction with imines

Subject reactions with imines

Subject with imines

Sulphenes with imines

Synthesis of Novel 3-Lactams with Polyaromatic Imines

Tantalum complexes with imines

Tautomerism with imines

Typical Procedures for 25a and Benzoic Acid Catalyzed Aza MBH Reaction of N Sulfonated Imine with MVK

Vinylsilanes with imines

© 2024 chempedia.info