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Intramolecular Friedel-Crafts acylations

Cydopentane reagents used in synthesis are usually derived from cyclopentanone (R.A. Ellison, 1973). Classically they are made by base-catalyzed intramolecular aldol or ester condensations (see also p. 55). An important example is 2-methylcydopentane-l,3-dione. It is synthesized by intramolecular acylation of diethyl propionylsucdnate dianion followed by saponification and decarboxylation. This cyclization only worked with potassium t-butoxide in boiling xylene (R. Bucourt, 1965). Faster routes to this diketone start with succinic acid or its anhydride. A Friedel-Crafts acylation with 2-acetoxy-2-butene in nitrobenzene or with pro-pionyl chloride in nitromethane leads to acylated adducts, which are deacylated in aqueous acids (V.J. Grenda, 1967 L.E. Schick, 1969). A new promising route to substituted cyclopent-2-enones makes use of intermediate 5-nitro-l,3-diones (D. Seebach, 1977). [Pg.81]

Intramolecular Friedel-Crafts acylations of olefins also give cycHc a,P-unsaturated cycHc ketones. Cyclopropane fused bicyclo[5.3.0]octenones, thus obtained, were used in the preparation of the marine sesquiterpenes, africanol [53823-07-7] and dactjlol [58542-75-9] (174). [Pg.562]

Each of the compounds indicated undergoes an intramolecular Friedel-Crafts acylation reaction to yield a cyclic ketone. Write the structure of the expected product in each case. [Pg.516]

An important application of the Friedel-Crafts acylation is the intramolecular reaction, leading to ring closure. This variant is especially useful for the closure of six-membered rings, but five-membered ring products and larger rings, as well as heterocycles, are also accessible ... [Pg.118]

Dibenzo[7>,/]thiepins, e.g. 2, are obtained from 2-(arylsulfanyl)benzenepyruvic or -acetic acids by intramolecular Friedel-Crafts acylation, followed by elimination of water or hydrochloric acid.3 60... [Pg.73]

Polyphosphoric acid is a commonly used catalyst for this reaction however, in some cases a mixture of hydrogen bromide/acetic acid gives better results. Acylation of the S-phenyl-, V-(4-tolyl)- or S-(l-naphthyl)-substituted thiobenzenepyruvic acids 3a-c affords the corresponding dibenzo[A,/]thiepins in satisfactory yields, while reaction of the S-(4-methoxyphenyl) or S-(2-naphthyl) derivatives fails to provide any thiepin.60 The intramolecular Friedel-Crafts acylation of 2-(arylsulfanyl)benzeneacetic acids also yields the corrresponding dibenzothiepins in this case the use of hydrogen fluoride sometimes results in purer products.38 The applicability of this method is restricted to the synthesis of stable bisannulated thiepins. [Pg.73]

Intramolecular Friedel-Crafts acylation has been observed with bonellin dimethyl ester (20).53 The reaction proceeds in contrast to corresponding porphyrins, very smoothly with concentrated sulfuric acid because the propanoic acid side chain at the sp3 center is located above the macrocyclic ring system and therefore can better fulfill the stereoelectronic requirements for the ring-closure reaction. The ring closure is accompanied by racemization in the product 21. [Pg.631]

Chromium carbene complexes having electron-rich arenes tethered to the car-bene oxygen or carbon underwent photodriven intramolecular Friedel-Crafts acylation in the presence of zinc chloride (Eqs. 32 and 33) [118]. The process was highly regioselective, undergoing acylation exclusively para to the activating group. [Pg.189]

Intramolecular Friedel-Crafts acylation of diaryl ketones Oxidation of phenols or aromatic amines Oxidation of aromatic hydrocarbons... [Pg.1686]

In 2007, Womack et al. published the conversion of 2-aUcylcinnamyldehydes to 2-aLkylindanones via a catalytic intramolecular Friedel-Crafts reaction. In the presence of 5-10 mol% FeCls different in situ generated ( )-2-alkylcinnamaldehydes-derived dimethyl acetals cyclized to l-methoxy-2-aIkyl-7//-indenes in good to high yields (Scheme 6) [22]. The transformation corresponds to a formal intramolecular Friedel-Crafts acylation which is achieved with catalytic quantities of Lewis acid. This result is in strong contrast to traditional Friedel-Crafts acylations which require stoichiometric amounts of Lewis acid. [Pg.6]

Cyclizations can also be carried out with an esterified oligomer of phosphoric acid called polyphosphate ester, which is chloroform soluble.55 Another reagent of this type is trimethylsilyl polyphosphate (Scheme 11.4, Entry 13).56 Neat methanesul-fonic acid is also an effective reagent for intramolecular Friedel-Crafts acylation (Scheme 11.4, Entry 14).57... [Pg.1020]

An alternative route to anthraquinone, which involves Friedel-Crafts acylation, is illustrated in Scheme 4.3. This route uses benzene and phthalic anhydride as starting materials. In the presence of aluminium(m) chloride, a Lewis acid catalyst, these compounds react to form 2-benzoyl-benzene-1-carboxylic acid, 74. The intermediate 74 is then heated with concentrated sulfuric acid under which conditions cyclisation to anthraquinone 52 takes place. Both stages of this reaction sequence involve Friedel-Crafts acylation reactions. In the first stage the reaction is inter-molecular, while the second step in which cyclisation takes place, involves an intramolecular reaction. In contrast to the oxidation route, the Friedel-Crafts route offers considerable versatility. A range of substituted... [Pg.84]

Furthermore, if the 2,4,6-triphenyl ester (187a) is dissolved in cone. H2S04 the brilliant colour of 1,3-diphenylfluorenone is at once observed—obtained via ring-closure (intramolecular Friedel-Crafts acylation) of the acyl cation (188a) ... [Pg.243]

Intramolecular Friedel-Crafts acylation of the furan ring of 403, which reacted at the 2-position, led to efficient formation of the linear 5 6 5 tricyclic system 404 in good yield (Equation 109) <1998JHC1371>. [Pg.755]

The 977-pyrido[3,4- ]pyrrolizin-9-one 145 has been prepared for its photochemical properties. The preparation involves an intramolecular Friedel-Crafts acylation of the acid chloride formed from 3-(l-pyrrolyl)pyridine-4-carboxy-late (Scheme 40). The product is a photosensitizer, which absorbs visible light its absorption spectra are pH, solvent, and concentration dependent <1994SAA57>. [Pg.797]

Titanium-mediated intramolecular Friedel-Crafts acylation and alkylation are important methods for construction of fused-ring systems (Scheme 29).107 As well as aromatics, olefin units also react in the same way.108 Alkylation of electron-rich olefins such as enol ethers or silyl enol ethers proceeds effectively in the presence of TiCl4.109... [Pg.411]

The electron-rich thiophene ring system can be elaborated into complex, fused thiophenes by acid-mediated intramolecular annelation reactions. For example, treatment of alcohol 96 with trimethylsilyl triflate promoted a Friedel-Crafts acylation and subsequent dehydration giving benzo[b]thiophene 97, a potential analgesic <00JMC765>. Treatment of ketone 98 with p-toluenesulfonic acid resulted in the formation of fused benzo[b]thiophene 99 <00T8153>. Another variant involved the cyclization of epoxide 100 to fused benzo[f>]thiophene 101 mediated by boron trifluoride-etherate . [Pg.95]

Acyl-transfer reactions are some of the most important conversions in organic chemistry and biochemistry. Recent work has shown that adjacent cationic groups can also activate amides in acyl-transfer reactions. Friedel-Crafts acylations are known to proceed well with carboxylic acids, acid chlorides (and other halides), and acid anhydrides, but there are virtually no examples of acylations with simple amides.19 During studies related to unsaturated amides, we observed a cyclization reaction that is essentially an intramolecular acyl-transfer reaction involving an amide (eq 15). The indanone product is formed by a cyclization involving the dicationic species (40). To examine this further, the related amides 41 and 42 were studied in superacid promoted conversions (eqs 16-17). It was found that amide 42 leads to the indanone product while 41... [Pg.164]

A useful extension of Friedel-Crafts acylation is an intramolecular reaction leading to cyclic products. Thus, five- and six-membered rings are readily and efficiently created by use of an appropriate aryl acyl chloride, as shown below. [Pg.309]

Similarly, benzo[/]pyrrolo[l,2-a]azepinone 68 (R = Ph X = CH2) can be obtained from the corresponding acid 67 via intramolecular Friedel-Crafts acylation (Scheme 14 (2002JMC4276)). [Pg.12]

In the cyclization of G by an intramolecular Friedel-Crafts acylation, it is observed that the product formed depends on the amount of Lewis acid catalyst used in the... [Pg.743]

Benzofuranyl)butanoic acid readily forms the acid chloride, and this undergoes intramolecular Friedel-Crafts acylation on treatment with tin(IV) chloride in carbon disulfide at room temperature, providing 1,2,3,4-tetra-hydro-l-dibenzofuranone (54%). " This intermediate has been converted to dibenzofuran by lithium aluminum hydride reduction and subsequent dehydrogenation, to 1-methyldibenzofuran by Grignard reaction and dehydrogenation, and to 1-dibenzofuranol by reaction with iV-bromosuccinimide and subsequent dehydrobromination with pyridine. [Pg.33]

The scandium-catalyzed intramolecular Friedel-Crafts acylation of 5-arylalkyl-substituted l,3-dioxane-4,6-diones gave indanones, tetralones, and benzosuberones (Equation 28) <2003OL4653, 2005JOC1316>. [Pg.786]

The electron-rich thiophene ring system can be annelated by intramolecular Friedel-Crafts acylation reactions to give fused thiophenes <99IJC648, 99JMC2774>. The synthesis of a thiophene isostere of ninhydrin involved an intramolecular Friedel-Crafts acylation <99SL1450>. Specifically, treatment of thiophene 86 with thionyl chloride followed by aluminum chloride gave annelated thiophene 87. The synthesis of isothianinhydrin 88 was then accomplished in six steps from 87. [Pg.100]

Scholl ring closure 1-14 Intramolecular Friedel-Crafts acylation... [Pg.1271]


See other pages where Intramolecular Friedel-Crafts acylations is mentioned: [Pg.574]    [Pg.574]    [Pg.574]    [Pg.1125]    [Pg.574]    [Pg.574]    [Pg.574]    [Pg.1125]    [Pg.953]    [Pg.713]    [Pg.1646]    [Pg.53]    [Pg.1021]    [Pg.32]    [Pg.377]    [Pg.708]    [Pg.33]    [Pg.137]    [Pg.75]    [Pg.251]    [Pg.295]    [Pg.541]   
See also in sourсe #XX -- [ Pg.1016 , Pg.1017 , Pg.1018 , Pg.1019 ]

See also in sourсe #XX -- [ Pg.653 , Pg.653 ]




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Acylation intramolecular

Benzyl Meldrum intramolecular Friedel-Crafts acylation

Friedel acylation

Friedel intramolecular

Friedel-Crafts reactions intramolecular acylations

Intramolecular -acyl

Intramolecular Friedel-Crafts

Meldrum intramolecular Friedel-Crafts acylation

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