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The amidation of aryl iodides using Cu2O nanoparticles is described. It is a heterogeneous process, no leaching of the Cu2O species occurs, and the catalyst can be recovered and recycled without loss of activity. Georg Thieme Verlag Stuttgart – New York.

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Reference:
Oxazolidine – Wikipedia,
Oxazolidine | C3H655NO – PubChem

 

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The present invention is directed to novel kinase inhibitors of general formula (I) and pharmaceutically acceptable salts thereof, and to the use of the kinase inhibitors of general formula (I) for treating diseases or disorders in which tau phosphorylation and cell cycle regulation is implicated, such as Alzheimer¿s Disease and cancer

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Reference:
Oxazolidine – Wikipedia,
Oxazolidine | C3H161NO – PubChem

 

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Electric Literature of 497-25-6, Because a catalyst decreases the height of the energy barrier, its presence increases the reaction rates of both the forward and the reverse reactions by the same amount.497-25-6, Name is Oxazolidin-2-one, molecular formula is C3H5NO2. In a article,once mentioned of 497-25-6

A series of epoxy resin-modified polyisocyanurate (EP-PIR) foams with oxazolidone (OX) rings and isocyanurate (IS) rings have been successfully prepared by the reaction of polymethylene polyphenyl isocyanate (PAPI) and diglycidyl ether of bisphenol-A (DGEBA). Fourier transform infrared spectroscopy and differential scanning calorimetry are performed to investigate the influence of curing temperature on the chemical structure of EP-PIR foams. The results indicate that low temperature is beneficial to the formation of the IS ring, and high temperature is in favor of the OX ring. The influence of the mole ratio of [PAPI]/[DGEBA] on the mechanical properties and thermal stability has also been studied. With the increase of [PAPI]/[DGEBA], the specific compressive strength shows a maximum of 0.0135 ± 0.0003 MPa m3/kg. The optimized mole ratio of [PAPI]/[DGEBA] is around 2.5 to reach the better mechanical and thermal properties, and the glass-transition temperature is as high as 323.5C.

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Reference:
Oxazolidine – Wikipedia,
Oxazolidine | C3H422NO – PubChem

 

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The N-acyl(phenylseleno)oxazolidinone 5 was prepared (85% yield) by treatment of the lithium salt of oxazolidinone with triphosgene, followed by addition of benzeneselenol. Reduction of 5 with n-Bu3SnH/AIBN gave the N- formyloxazolidinone 6 (99%) and reaction with allyltri-n-butylstannane gave 7 (89%). Bimolecular additions to various alkenes using the N-acyl radical derived from oxazolidinone 5 were also studied. Best results were obtained with electron rich olefins, such as enol ether derivatives. Eight such additions are reported, with yields ranging from 51-90%. Two prochiral substrates showed significant levels of diastereoselectivity in reactions with 5/Bu3SnH.

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Reference:
Oxazolidine – Wikipedia,
Oxazolidine | C3H688NO – PubChem

 

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A new method to prepare optically active methylphenidate starting from piperidine is described. The method consists of a transformation of N-methoxycarbonylated piperidine to the corresponding alpha-methoxylated carbamate utilizing electrochemical oxidation followed by the coupling reaction with optically active Evans imides to produce optically active methylphenidate derivatives with high stereoselectivity (erythrolthreo=5.3/94.7, the threo isomer; 99.6%ee). (C) 2000 Elsevier Science Ltd.

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Reference:
Oxazolidine – Wikipedia,
Oxazolidine | C3H801NO – PubChem

 

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Application of 497-25-6, Chemistry is the science of change. But why do chemical reactions take place? Why do chemicals react with each other? The answer is in thermodynamics and kinetics.In a document type is Patent, and a compound is mentioned, 497-25-6, Oxazolidin-2-one, introducing its new discovery.

Mycalamide compounds are derived from marine sponges of the genus Mycale or prepared by synthetic methods. These compounds, and pharmaceutical compositions containing them as active ingredients, are useful as immunomodulatory agents.

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Reference:
Oxazolidine – Wikipedia,
Oxazolidine | C3H159NO – PubChem

 

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Compounds of the formula I STR1 in which R 1 is arylamino, N-aryl-N-(lower alkoxy-lower alkyl)-amino, N-aryl-N-aryl-lower alkyl-amino or heterocyclyl bonded via a ring carbon atom, X is a carbonyl or methylene group, R 2 and R 3 independently of one another are hydrogen or lower alkyl or, together with the carbon atom with which they are bonded, are a cycloalkylidene radical, R 4 is hydrogen, lower alkyl, lower alkanoyl or lower alkoxycarbonyl, R 5 is hydroxyl, lower alkanoyloxy or lower alkoxycarbonyloxy, R 6 is hydrogen, lower alkyl, lower alkenyl, lower alkynyl, cycloalkyl, cycloalkyl-lower alkyl, aryl-lower alkyl or heteroaryl-lower alkyl having 5 to 7 ring atoms in the heteroaryl ring and R 7 is hydrogen or lower alkyl, or R 6 and R. sub.7, together with the carbon atom with which they are bonded, are a cydoalkylidene radical and R 8 denotes an aliphatic, cycloaliphatic-aliphatic or heteroarylaliphatic radical, and their salts can be used as active ingredients for medicaments for treatment of high blood pressure.

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Reference:
Oxazolidine – Wikipedia,
Oxazolidine | C3H208NO – PubChem

 

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Lithium oxalyldifluoroborate (LiODFB) has several unique characteristics, such as high ionic conductivity over a wide temperature range and the ability to form and stabilize solid electrolyte interface films on graphite surfaces. A series of binary, room-temperature, molten electrolytes composed of LiODFB and organic compounds with acylamino groups (acetamide, oxazolidinone or OZO) have been synthesized. Fourier-transform infrared (FT-IR) spectroscopy indicates that CO and N-H functional groups undergo blue or red shifts upon addition of LiODFB. The electrolytes have excellent thermal stabilities and electrochemical characteristics that allow them to be promising electrolytes for electrochemical double layer capacitors (EDLCs). Here, we examine 1:5 molar ratio LiODFB and acetamide/OZO ionic liquid (IL) electrolytes in EDLCs. IL compatibility with two types of carbon-based electrodes is investigated theoretically and experimentally. We simulate possible structures and ion diameters for the ILs, which must be compatible with pore sizes of the carbon electrodes. Mesoporous activated carbon AC2, with a pore size similar to the ionic diameter of LiODFB-acetamide, has a specific capacitance of 154.2 Fg-1 at 20 m Ag-1. Additionally, typical capacitive and reversibility behaviors can be seen in the charge-discharge curves over 0-2 V. Finally, the EDLCs exhibit good charging/discharging performances.

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Reference:
Oxazolidine – Wikipedia,
Oxazolidine | C3H428NO – PubChem

 

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The integrin receptors represent valuable targets for therapeutic interventions; being over-expressed in many pathological states, their inhibition can be effective to treat a number of severe diseases. Since integrin functions are mediated by interactions with ECM protein ligands, the inhibition can be achieved by interfering with such interactions using small mimetics of the integrin-ligand recognition motifs (e.g. RGD, LDV, etc.). In this review, we focus on the antagonists with peptideheterocycle hybrid structures. The introduction of well-designed scaffolds has met considerable success in the rational design of highly stable, bioavailable, and conformationally defined antagonists. Two main approaches are discussed herein. The first approach is the use of scaffolds external to the main recognition motifs, aimed at improving conformational definition. In the second approach, heterocyclic cores are introduced within the recognition motifs, giving access to libraries of 3D diverse candidate antagonists.

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Reference:
Oxazolidine – Wikipedia,
Oxazolidine | C3H478NO – PubChem

 

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Introduction: Staphylococcus aureus remains one of the leading causes of morbidity and mortality worldwide. This is to a large extent due to antibiotic-resistant strains, in particular methicillin-resistant S. aureus (MRSA). While the toll of invasive MRSA infections appears to decrease in U.S. hospitals, the rate of community-associated MRSA infections remains constant and there is a surge of MRSA in many other countries, a situation that calls for continuing if not increased efforts to find novel strategies to combat MRSA infections.Areas covered: This review provides an overview of current investigational drugs and therapeutic antibodies against S. aureus in early clinical development (up to phase II clinical development). It includes a short description of the mechanism of action and a presentation of microbiological and clinical data.Expert opinion: Increased recent antibiotic development efforts and results from pathogenesis research have led to several new antibiotics and therapies, such as anti-virulence drugs, as well as a more informed selection of targets for vaccination efforts against MRSA. This developing portfolio of novel anti-staphylococcal drugs will hopefully provide us with additional and more efficient ways to combat MRSA infections in the near future and prevent us from running out of treatment options, even if new resistances arise.

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Reference:
Oxazolidine – Wikipedia,
Oxazolidine | C3H1102NO – PubChem