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PROCESS FOR PREPARING CYCLIC ALKYLENE UREAS

A process for producing a cyclic alkylene urea product of Formula I: in which a compound of Formula II and/or Formula III is contacted in a reaction zone with a compound of Formula IV and/or Formula V and in the presence of one or more carbonyl delivering compounds; in which; R1 is ?[A?X?]qR3; R2 is on each occurrence independently selected from H and C1 to C6 alkyl groups which are optionally substituted by one or two groups selected from ?OH and ?NH2; R3 is on each occurrence independently selected from H and C1 to C6 alkyl groups which are optionally substituted by one or two groups selected from ?OH and ?NH2; A is on each occurrence independently selected from C1 to C3 alkylene units, optionally substituted by one or more C1 to C3 alkyl groups; X is on each occurrence independently selected from ?O?, ?NR2?, groups of Formula VI, and groups of Formula VII and p and q are each independently selected from a whole number in the range of from 0 to 8; wherein the compound of Formula II and/or the compound of Formula III are added to a reaction zone comprising compound of Formula IV and/or compound of Formula (V) continuously or semi-continuously over a period of time, or in two or more batches.

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Reference£º
Oxazolidine – Wikipedia,
Oxazolidine | C3H234NO – PubChem

 

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Copper-Catalyzed Double Decarboxylative Coupling Reactions of Alkynyl Carboxylic Acid and Glyoxylic Acid: Synthesis of Propargyl Amines and Imidazopyridines

The reaction of alkynyl carboxylic acids, glyoxylic acid derivatives, and amines in the presence of a copper catalyst afforded the corresponding propargyl amines in good yields. The alkynyl carboxylic acid of this coupling reaction shows similar reactivity to that of a terminal alkyne, and the reactivity of the glyoxylic acid is almost identical to that of an aldehyde. When 2-aminopyridine was employed as the amine source, imidazopyridine derivatives were formed in good yields.

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Reference£º
Oxazolidine – Wikipedia,
Oxazolidine | C3H438NO – PubChem

 

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Functional ion liquid method for catalytic synthesis of amine compounds (by machine translation)

The invention discloses a method for synthesizing an amine compound catalyzed by functionalized ionic liquid. According to the method, functionalized ionic liquid is used as a catalyst to catalyze N-alkylation of amine and alcohol to synthesize corresponding compound derivatives. Acid functionalized ionic liquid is used as the catalyst to synthesize a series of compounds of amine. The method has the following advantages: a catalytic system is a metal-free system; the usage amount of the catalyst is small, and the catalyst has high catalytic activity, good stability and low corrosivity; operation is simple, and reaction is mild; post-treatment is easy, and the catalyst can be cyclically used.

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Reference£º
Oxazolidine – Wikipedia,
Oxazolidine | C3H255NO – PubChem

 

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Process for preparing indan derivatives

This invention relates to a process for preparing indan derivatives and comprises a process for preparing cis-1-amino-2-indanol by treating (¡À)indan-1,2-diol and/or its 2-formate derivative with specific microbes to give optically active 2-hydroxy-1-indanone, converting the optically active 2-hydroxy-1-indanone to its oxime, and treating the oxime with hydrogen or a hydrogen donor in the presence of a heterogeneous hydrogenation catalyst, a process for preparing optically active 2-hydroxy-1-indanone and/or optically active indan-1,2-diol by treating (¡À)indan-1,2-diol and/or its 2-formate derivative with specific microbes, and a process for preparing cis-1-amino-2-indanol by treating the oxime of 2-hydroxy-1-indanone with hydrogen or a hydrogen donor in the presence of a heterogeneous hydrogenation catalyst.

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Reference£º
Oxazolidine – Wikipedia,
Oxazolidine | C3H169NO – PubChem

 

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Bronsted base-modulated regioselectivity in the aerobic oxidative amination of styrene catalyzed by palladium

Palladium(II)-catalyzed aerobic oxidative amination of styrene with oxazolidinone proceeds with catalyst-controlled regioselectivity: (CH 3CN)2PdCl2 (1) and (Et3N) 2PdCl2 (2) catalyze formation of the anti-Markovnikov and Markovnikov enecarbamate products, 3 and 4, respectively. Kinetic studies and deuterium kinetic isotope effects demonstrate that these two reactions possess different rate-limiting steps, and the data indicate that the product regiochemistry arises from the presence or absence of an effective Bronsted base in the reaction. In the presence of a Bronsted base such as triethylamine or acetate, the kinetically preferred Markovnikov aminopalladation adduct of styrene is trapped via rapid deprotonation of a zwitterionic intermediate and leads to formation of 4. In the absence of an effective Bronsted base, however, slow deprotonation of this adduct enables aminopalladation to be reversible, and product formation proceeds through the thermodynamically preferred anti-Markovnikov aminopalladation adduct to yield 3.

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Reference£º
Oxazolidine – Wikipedia,
Oxazolidine | C3H1060NO – PubChem

 

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A new regio- and stereoselective synthesis of beta-enamino ketones with 3-ethoxycyclobutanones and substituted amines

A new method toward regio- and stereoselective synthesis of beta-enamino ketones is described. Through Lewis acid-catalyzed reactions between 3-ethoxycyclobutanones and substituted amines, a variety of cis and trans beta-enamino ketone derivatives were prepared with complete regio- and stereoselectivity at room temperature.

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Oxazolidine – Wikipedia,
Oxazolidine | C3H762NO – PubChem

 

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ASPARTYL PROTEASE INHIBITORS

A compound of formula (I): N-oxides, addition salts, quaternary amines metal complexes stereochemically isomeric forms and metabolites thereof, wherein A is CR1 or N; D is H, C1-C6alkyl, C2-C6alkenyl, C2-C6alkynyl or Q is C2-C6alkenyl, C2-Cealkynyl, aryl or heterocyclyl; W is H, Ci-Cealkyl, C2-C6alkenyl, haloC1-C3alkyl, hydroxyC1-C3alkyl, C3-C6Cy cloalkyl, aryl or heterocyclyl; one of X’ and X” is H or CH3, the other is C1-C3alkyl, F, OH, NRaRb, CF3 or N3; or X’ and X” are both F; Y is a bond, CH2, NRa, O, CH2CH2, CH2NRa, CH2O or S(=O)r; Z is O, S(=O)r or NRa; the other variables are as defined in the specification. The compounds of the invention are inhibitors of BACE and are among other things useful for the treatment and/or prevention of conditions associated with BACE activity such as Alzheimer’s disease.

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Oxazolidine – Wikipedia,
Oxazolidine | C3H160NO – PubChem

 

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Hexahydro-trans- and tetrahydropyridoindole neuroleptic agents

Derivatives of 2,3,4,5-tetrahydro-1H-pyrido[4,3-b]-indole and of (+)enantiomeric, mixtures of (+) and (-)enantiomeric or (¡À)racemic 2,3,4,4a,5,9b-hexahydro-4a,9b-trans-1H-pyrido[4,3-b]indole, substituted at the 5-position with an aryl group and at the 2-position with a carbonylaminoalkyl group or an aminoalkyl group, are neuroleptic agents useful in the treatment of certain psychoses and neuroses.

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Reference£º
Oxazolidine – Wikipedia,
Oxazolidine | C3H247NO – PubChem

 

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Diastereoselective [2,3]-Sigmatropic Rearrangement of N-Allyl Ammonium Ylides

A rapid and diastereoselective method was developed for the [2,3]-sigmatropic rearrangement of N-Allyl ammonium ylides, affording products in up to 95% isolated yields and up to 97:3 dr; most of the desired products were formed within 1 minute. For the asymmetric reaction, a chiral auxiliary was introduced to the starting compound, affording the rearrangement product with high diastereoselectivities.

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Reference£º
Oxazolidine – Wikipedia,
Oxazolidine | C3H850NO – PubChem

 

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Direct Catalytic Desaturation of Lactams Enabled by Soft Enolization

A direct catalytic method is described for the alpha,beta-desaturation of N-protected lactams to their conjugated unsaturated counterparts under mildly acidic conditions. The reaction is consistently operated at room temperature and tolerates a wide range of functional groups, showing reactivity complementary to that of prior desaturation methods. Lactams with various ring sizes and substituents at different positions all reacted smoothly. The synthetic utility of this method is demonstrated in a concise synthesis of Rolipram. In addition, linear amides also prove to be competent substrates, and the phthaloyl-protected product serves as a convenient precursor to access various conjugated carboxylic acid derivatives. Strong bases are avoided in this desaturation approach, and the key is to merge soft enolization with a Pd-catalyzed oxidation process.

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Reference£º
Oxazolidine – Wikipedia,
Oxazolidine | C3H424NO – PubChem