cyclic anhydrides
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2022 ◽  
Author(s):  
Hemant P. Soni ◽  
Sanjiv O. Tomer

In the present work, the molecular framework of the quinidine was modified at the methoxy functional of C6’ carbon of quinoline moiety with a long-chain carboxylic acid group (-COOH) and...


Author(s):  
Stephan Schulz ◽  
Swarup Ghosh ◽  
Eduard Glöckler ◽  
Christoph Wölper ◽  
Jürgen Linders ◽  
...  

ACS Omega ◽  
2021 ◽  
Author(s):  
Jae Ho Shim ◽  
Sung Joo Park ◽  
Byung Kook Ahn ◽  
Ji Yeon Lee ◽  
Hyeon Soo Kim ◽  
...  

2021 ◽  
Author(s):  
Lanfang Hu ◽  
Xun Zhang ◽  
Xiaohan Cao ◽  
Danjing Chen ◽  
Yue Sun ◽  
...  

Polymers ◽  
2021 ◽  
Vol 13 (10) ◽  
pp. 1651
Author(s):  
Felipe de la Cruz-Martínez ◽  
Marc Martínez de Sarasa Buchaca ◽  
Almudena del Campo-Balguerías ◽  
Juan Fernández-Baeza ◽  
Luis F. Sánchez-Barba ◽  
...  

The catalytic activity and high selectivity reported by bimetallic heteroscorpionate acetate zinc complexes in ring-opening copolymerization (ROCOP) reactions involving CO2 as substrate encouraged us to expand their use as catalysts for ROCOP of cyclohexene oxide (CHO) and cyclic anhydrides. Among the catalysts tested for the ROCOP of CHO and phthalic anhydride at different reaction conditions, the most active catalytic system was the combination of complex 3 with bis(triphenylphosphine)iminium as cocatalyst in toluene at 80 °C. Once the optimal catalytic system was determined, the scope in terms of other cyclic anhydrides was broadened. The catalytic system was capable of copolymerizing selectively and efficiently CHO with phthalic, maleic, succinic and naphthalic anhydrides to afford the corresponding polyester materials. The polyesters obtained were characterized by spectroscopic, spectrometric, and calorimetric techniques. Finally, the reaction mechanism of the catalytic system was proposed based on stoichiometric reactions.


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