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Nanocatalysts for chemical transformation of carbon dioxide

This review deals with the applications of nanocatalysts in chemical transformation of CO2, a field that has attracted great interest in the chemical, fuels, materials, and industrial communities. Literature has been surveyed from 2010 to 2017.

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Oxazolidine – Wikipedia,
Oxazolidine | C3H1087NO – PubChem

 

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Modification of epoxy resin: A comparison of different types of elastomer

Composites were prepared using epoxy resin (ER), carboxyl-terminated butadiene acrylonitrile copolymer (CTBN) and hydroxyl-terminated polybutadiene (HTPB), in different proportions. A chemical link between the HTPB and the epoxy resin was promoted employing tolylene diisocyanate (TDI). The reactions between elastomers and epoxy resin were followed by FTIR. The mechanical properties of the composites were evaluated and the microstructure was investigated through scanning electronic microscopy (SEM). The results showed that the impact resistance of CTBN-modified ER was superior to that of the pure epoxy resin. For the composites with HTPB, the impact resistance increased with elastomer concentration up to three parts per hundred parts of resin (phr). Higher concentrations of HTPB resulted in larger particles and gave lower impact values.

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Oxazolidine – Wikipedia,
Oxazolidine | C3H925NO – PubChem

 

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Nickel-catalyzed reductive and borylative cleavage of aromatic carbon-nitrogen bonds in N-aryl amides and carbamates

The nickel-catalyzed reaction of N-aryl amides with hydroborane or diboron reagents resulted in the formation of the corresponding reduction or borylation products, respectively. Mechanistic studies revealed that these reactions proceeded via the activation of the C(aryl)-N bonds of simple, electronically neutral substrates and did not require the presence of an ortho directing group.

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Oxazolidine – Wikipedia,
Oxazolidine | C3H1062NO – PubChem

 

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METHOD FOR PRODUCING 1,4-DIPHENYL AZETIDINONE DERIVATIVES

The invention relates to a method for producing 1,4-diphenyl azetidinone derivatives from suitably protected beta-substituted amino amides, in the presence of silylation agents. Said method uses cyclization catalysts that comprise phosphonium ions as the cation of formula (XII), and ions of the following general formulas (a), (b), (c) or (d) as the anion. In said formulas, the symbols, substituents and indices are defined as follows: Z = C=O, C=S, S=O, SO2 or C=NR20; K = O, S, NR21 or CR22R23; L = NR24 or CR25R26; n = 0 or 1; M = O, C=O, NR27 or CR28R29; Q = O, S, NR30, CR31R32,C=O, C=S, S=O, SO2 or C=NR34; R = CR35 or N; T = CR36 or N; U = CR37 or N; V = CR38 or N; the groups R16 to R19can represent, for example, aryl or (C1-C15) alkyl, aryl(C1-C10)alkene, and the groups R20 to R32 and R34 to R38 can represent in addition H or heteroaryl; R39 and R40 represent, for example (C1-C6) alkyl. The anion can also be R41O,R42COOor Cl, Br or I (combined with Ag2O).

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Oxazolidine – Wikipedia,
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Direct, intermodular, enantioselective, iridium-catalyzed allylation of carbamates to form carbamate-protected, branched allylic amines

The direct reaction between carbamates and achiral allylic carbonates to form branched, conveniently protected primary allylic amines with high regioseiectivity and enantioselectivity Is reported. This process occurs without base or with 0.5 equiv K3PO4 In the presence of a metalacyclic iridium catalyst containing a labile ethylene ligand. The reactions of aryl-, heteroaryl-, and alkyl-substituted allylic carbonates with BocNH 2, FmocNH2, CbZNH2, TrocNH2, TeocNH2, and 2-oxazolidinone occur In good yields, with high selectivity for the branched isomer and high enantioselectivities (98% average ee).

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Oxazolidine – Wikipedia,
Oxazolidine | C3H1127NO – PubChem

 

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Iron(II)/copper(I)-mediated stereoselective carbozincation of ynamides. One-pot synthesis of alpha-allyl-tetrasubstituted-enamides

The iron(II) chloride- and copper(I) iodide-mediated carbozincation of a panel of substituted ynamides is described in this article. The reaction is totally regio- and stereoselective. Experiments showed that the reaction mediated with Fe(II) was more substrate dependent than the reaction performed with Cu(I). Interestingly, in the presence of allylbromide, stereoselective carboallylation can be achieved for the first time in a one-pot procedure, leading to skipped dienamides.

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Oxazolidine – Wikipedia,
Oxazolidine | C3H755NO – PubChem

 

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Highly diastereoselective dioxetane formation in the photooxygenation of enecarbamates with an oxazolidinone chiral auxiliary: Steric control in the [2 + 2] cycloaddition of singlet oxygen through conformational alignment

The photooxygenation of oxazolidinone-substituted enecarbamates leads to diastereomerically pure dioxetanes. The high diastereoselectivity is rationalized in terms of effective pi-facial control achieved by shielding one side of the double bond with the chiral auxiliary. The absolute configuration of the dioxetanes is assigned by derivatization to diols. Copyright

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Oxazolidine – Wikipedia,
Oxazolidine | C3H270NO – PubChem

 

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Selective alpha-arylation of alpha,beta-unsaturated imides mediated by a visible light photoredox catalyst

Visible light-mediated alpha-arylation of alpha,beta-unsaturated imides is achieved via aminium radicals generated from diarylalkylamines using a photoredox catalyst. On the basis of emission quenching experiments, a plausible pathway of the reaction is discussed.

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Oxazolidine | C3H301NO – PubChem

 

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Comparative life cycle assessment of potassium carbonate and monoethanolamine solvents for CO2 capture from post combustion flue gases

Carbon capture and storage (CCS) has the potential to enable significant reductions in carbon dioxide (CO2) emissions from stationary sources such as coal-fired power stations. The most advanced carbon capture technology is CO2 absorption using amine-based solvents, such as monoethanolamine (MEA). However, there is concern that the increased use of amine-based solvents will lead to other potential negative environmental impacts, such as increased human toxicity. The use of benign inorganic solvents, such as potassium carbonate, which do not degrade in the presence of oxygen or other impurities such as sulphurous or nitrous oxides offer significant advantages over amine-based solvents in terms of environmental impact.A comparative life cycle assessment (LCA) between the use of MEA and the CO2CRC’s potassium carbonate based UNO MK 3 technology for the capture of 1tonne of CO2 from a brown-coal fired power station has been completed. The results reveal that the UNO MK 3 process is significantly better than MEA on ecotoxicity and carcinogen emissions and substantially better on all other indicators. The benefits of the UNO MK 3 process compared with MEA are due to avoidance of emissions from MEA degradation along with the savings in energy use for CO2 removal.The significant environmental benefits of the UNO MK 3 process compared with MEA were not altered by an uncertainty analysis or sensitivity analysis of key inputs and assumptions.

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Oxazolidine – Wikipedia,
Oxazolidine | C3H570NO – PubChem

 

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Iridium-Catalyzed Highly Regioselective Azide-Ynamide Cycloaddition to Access 5-Amido Fully Substituted 1,2,3-Triazoles under Mild, Air, Aqueous, and Bioorthogonal Conditions

A highly regioselective method to access 5-amido fully substituted 1,2,3-triazoles by iridium-catalyzed azide-ynamide cycloaddition under mild, air, aqueous, and bioorthogonal conditions is reported. The excellent regioselectivities may derive from the strong coordination between the carbonyl oxygen of ynamide and the -acidic iridium. Since the iridium ion is insensitive to oxygen/water and exhibits low cytotoxicity, it could catalyze this reaction in both organic and biological environments efficiently. Preparation in gram-scale and application in carbohydrates highlight this method.

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Oxazolidine – Wikipedia,
Oxazolidine | C3H1016NO – PubChem