dimerization reaction
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Fuel ◽  
2022 ◽  
Vol 308 ◽  
pp. 122077
Author(s):  
Ying Chen ◽  
Chengxiang Shi ◽  
Tinghao Jia ◽  
Qiduan Cai ◽  
Lun Pan ◽  
...  

Molecules ◽  
2021 ◽  
Vol 27 (1) ◽  
pp. 66
Author(s):  
Robert D. Barrows ◽  
Mark J. Dresel ◽  
Thomas J. Emge ◽  
Paul R. Rablen ◽  
Spencer Knapp

The amidation reaction of a tetrahydroisoquinolin-1-one-4-carboxylic acid is a key step in the multi-kilogram-scale preparation of the antimalarial drug SJ733, now in phase 2 clinical trials. In the course of investigating THIQ carboxamidations, we found that propanephosphonic acid anhydride (T3P) is an effective reagent, although the yield and byproducts vary with the nature and quantity of the base. As a control, the T3P reaction of a 3-(2-thienyl) THIQ was performed in the absence of the amine, and the products were characterized: among them are three dimeric allenes and two dimeric lactones. A nucleophile-promoted ketene dimerization process subject to subtle steric and stereoelectronic effects accounts for their formation. Two novel monomeric products, a decarboxylated isoquinolone and a purple, fused aryl ketone, were also isolated, and mechanisms for their formation from the ketene intermediate are proposed.


Catalysts ◽  
2021 ◽  
Vol 11 (9) ◽  
pp. 1105
Author(s):  
Snunkheam Echaroj ◽  
Channarong Asavatesanupap ◽  
Sumaeth Chavadej ◽  
Malee Santikunaporn

A promising production route for a high-quality base stock for lubricants is the oligomerization of high molecular-weight olefins in a high energy efficiency system. Oligomerization of 1-decene (C10) was conducted in a microwave-assisted system over a HY zeolite catalyst at different reaction temperatures and times. Higher reaction temperature resulted in increasing formation of dimers and trimers. The oligomerization reaction yielded 80% conversion, 54.2% dimer product, 22.3% trimer product and 3.4% heavier product at 483 K for a reaction time of 3 h. The best fit kinetic model for the dimerization reaction was formulated from an assumption of no vacant reaction sites. For the trimerization reaction, a molecule of dimer (C20) formed on the active site, interacted with a molecule of 1-decene in the bulk solution to form a molecule of trimer (C30). Apparent activation energies for the dimerization and trimerization reactions were 70.8 ± 0.8 and 83.6 ± 0.9 kJ/mol, respectively. The C13-NMR spectrum indicated that the oligomer product contained a significant portion of highly branched hydrocarbons, causing a substantial reduction in the viscosity index compared to conventional poly-alpha olefin lubricant (PAO).


Synthesis ◽  
2021 ◽  
Author(s):  
Yingchao Huang ◽  
Jun Chen ◽  
Yu Liu ◽  
Ping Lu

We reported here a facile synthesis of dibenzocyclooctadiones via dimerization of benzocyclobutenones in the presence of simple base via the elusive benzocyclobutenone anions. The temperature effect played a crucial role in the dimerization reaction. Further synthesis of 5,11-disubstituted dibenzo[a,e]cyclooctatetraene from dibenzocyclooctadione was also explored.


Author(s):  
Qizhang Wu ◽  
Xia Zhang ◽  
Jiaxin Du ◽  
Changqin Hu

Synthesis ◽  
2021 ◽  
Author(s):  
Vitali M. Boitsov ◽  
Alexander V. Stepakov ◽  
Siqi Wang ◽  
Alexander S. Filatov ◽  
Stanislav V. Lozovskiy ◽  
...  

AbstractThe multi-component 1,3-dipolar cycloaddition of ninhydrin, α-amino acids (or peptides), and cyclopropenes for the synthesis of spirocyclic heterocycles containing both 3-azabicyclo[3.1.0]hexane and 2H-indene-1,3-dione motifs has been developed. This method provides easy access to 3-azabicyclo[3.1.0]hexane-2,2′-indenes with complete stereoselectivity and a high degree of atom economy under mild reaction conditions. A broad range of cyclopropenes and α-amino acids have been found to be compatible with the present protocol, which offers an opportunity to create a new library of biologically significant scaffold (3-azabicyclo[3.1.0]hexane). In addition, the сomprehensive study of mechanism of azomethine ylide formation from ninhydrin and sarcosine was performed by means of M11 density functional theory (DFT) calculations. It has been revealed that experimentally observed 1-methylspiro[aziridine-2,2′-indene]-1′,3′-dione is a kinetically controlled product of this reaction and appears to act as a 1,3-dipole precursor. This theoretical study also shed light on the main transformations of the azomethine ylide derived from ninhydrin and sarcosine such as a 1,3-dipolar cycloaddition to cyclopropene dipolarophiles, a dimerization reaction and a (1+5) electrocyclization reaction. The antitumor activity of some synthesized compounds against cervical carcinoma (HeLa­) cell line was evaluated in vitro by MTS-assay.


CrystEngComm ◽  
2021 ◽  
Author(s):  
Kanae Yano ◽  
Ryo Nishimura ◽  
Yohei Hattori ◽  
Masakazu Morimoto ◽  
Haruki Sugiyama ◽  
...  

Photoinduced topographical changes, bending, and photosalient effect due to the dimerization reaction were observed on a single crystal of 7-methoxycoumarin, upon deep UV (254 nm) light irradiation.


Catalysts ◽  
2020 ◽  
Vol 10 (12) ◽  
pp. 1481
Author(s):  
Simon Dotzauer ◽  
Gul Barg Hadaf ◽  
Fadhil S. Kamounah ◽  
Anders Kadziola ◽  
Ji-Woong Lee

Carbon dioxide is an intrinsically stable molecule; however, it can readily react with various nucleophilic reagents. In the presence of a cyanide source, CO2 was proven to be useful to promote addition reactions. Here we report the use of CO2 to facilitate 1,4-conjugate cyanide addition reaction to chalcones to generate organonitriles. Nitriles are key component in organic synthesis due to their utility in numerous functional group transformation, however, conjugation addition of cyanide has been a challenge in this substrate class due to side reactions. To mitigate this, we employed simple ammonium and metal cyanide sources as nucleophiles under carbon dioxide atmosphere where high selectivity toward the desired product was obtained. The presented reaction is not feasible under inert atmosphere, which highlights the important role of CO2, as a Lewis and Brøndsted acidic catalyst. Further derivatization of organonitriles compounds were performed to showcase the utility of the reaction, while an unprecedented dimerization reaction was identified and characterized, affording a cyclopentanone scaffold.


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