Quinoxaline Synthesis from α-Hydroxy Ketones via a Tandem Oxidation Process Using Catalysed Aerobic Oxidation

Synlett ◽  
2005 ◽  
Vol 2005 (06) ◽  
pp. 1003-1005 ◽  
Author(s):  
Richard Taylor ◽  
Ross Robinson
2017 ◽  
Vol 53 (79) ◽  
pp. 10942-10945 ◽  
Author(s):  
Somraj Guha ◽  
Imran Kazi ◽  
Pranamita Mukherjee ◽  
Govindasamy Sekar

Halogen-bonded iodonium ions have been employed as selective oxidants in a challenging domino oxidation process to form synthetically important α-hydroxy ketones from easily available benzylic alcohols.


Author(s):  
M. RAVIKANTH ◽  
CATALINA ACHIM ◽  
JOHN S. TYHONAS ◽  
ECKARD MÜNCK ◽  
JONATHAN S. LINDSEY

The aerobic oxidation process for the synthesis of porphyrins, previously performed using 5 mol % p-chloranil (TCQ), 5 mol % iron(II) phthalocyanine ( FePc ) and stoichiometric amounts of O 2, has been refined using new phthalocyanine catalysts. Four phthalocyanine catalysts have been prepared, characterized by Mössbauer spectroscopy and examined for efficacy in the high concentration (0.1 M) synthesis of tetraphenylporphyrin at room temperature. Each phthalocyanine has been identified to be a μ-oxo dimer. Two catalysts are soluble (the μ-oxo dimers [(t-butyl)4 FePc ]2 O and [(n- C 6 H 13 O )4 FePc ]2 O ) and enable homogeneous reactions, while two are insoluble (the μ-oxo(1) and μ-oxo(2) dimers of FePc , ( FePc )2 O ) and give heterogeneous reactions. These four phthalocyanine compounds provide efficient catalysis at the 0.3–1 mol % level using only 1 mol % quinone or hydroquinone ( TCQ , DDQ , TCQH 2 or DDQH 2), affording ~25% yields of tetraphenylporphyrin in 60 min of oxidation. There are no discernible advantages of the homogeneous versus heterogeneous catalysts. The μ-oxo dimers are active, but FePc is inactive, at the 0.3 mol % level. The activity of the FePc sample at the 5 mol % level is attributed to residual μ-oxo dimer impurity. This aerobic oxidation process is superior to stoichiometric oxidation with TCQ or DDQ , and can be performed in the presence of BF 3· O ( Et )2, trifluoroacetic acid, or under neutral conditions.


2015 ◽  
Vol 11 (5) ◽  
pp. 3540-3546 ◽  
Author(s):  
V.M. Abbasov ◽  
L.M. Afandiyeva ◽  
L.I. Aliyeva ◽  
L.H. Nuriyev ◽  
Ch.Q. Salmanova ◽  
...  

Liquid-phase aerobic oxidation of naphthene-paraffinic hydrocarbons at 217-330о С of diesel fraction of Balakhany oils in the presence of the mixtures of Mn, Cr salts of natural petroleum acids (MeNPA) has been investigated. The catalytic oxidation process  is realized for 7 hours at temperature 135-1400C in a barbotage reactor. Samples were taken every hour and oxidized product was separated by composition in accordance with known methods. Mechanism of oxidation process of naphthene-paraffinic hydrocarbons has been studied by IR- spectroscopy. It has been found that, after 5 hours oxidation of naphthene-paraffinic hydrocarbons the yield of obtaining  synthetic petroleum acids rich 16,5%, the yield of oxysynthetic petroleum acids-18%. The changes of the optical density of a carbonyl and a hydroxyl groups depending on the time were studied. It was found that the oxidation reaction should be conducted within 6 hours, as D1713(C=O) and  D941(OH) after 6 hours decrease and it’s probably connected with beginning  decomposition process of the acids and oxyacids.


2018 ◽  
Vol 20 (1) ◽  
pp. 266-273 ◽  
Author(s):  
Kathiravan Murugesan ◽  
Thirusangumurugan Senthamarai ◽  
Manzar Sohail ◽  
Muhammad Sharif ◽  
Narayana V. Kalevaru ◽  
...  

Nanoscale Fe2O3-catalyzed environmentally benign synthesis of nitriles and amides has been performed from easily accessible aldehydes and ammonia using O2.


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