micellar media
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Author(s):  
Zoltán Novák ◽  
Réka Adamik ◽  
Balázs Buchholcz ◽  
Ferenc Darvas ◽  
Gellért Sipos
Keyword(s):  

2021 ◽  
pp. 451-466
Author(s):  
Giorgio Strukul ◽  
Fabrizio Fabris ◽  
Alessandro Scarso

Author(s):  
Sadia Noor ◽  
Ahmad Raheel ◽  
Muhammad Babar Taj ◽  
Saima Shabbir ◽  
Raja Hammad Ahmad ◽  
...  
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Materials ◽  
2021 ◽  
Vol 14 (12) ◽  
pp. 3250
Author(s):  
Karolina Kałduńska ◽  
Anna Kozakiewicz ◽  
Magdalena Wujak ◽  
Andrzej Wojtczak

Within the broad group of Fe non-heme oxidases, our attention was focused on the catechol 1,2- and 2,3-dioxygenases, which catalyze the oxidative cleavage of aromatic rings. A large group of Fe complexes with N/O ligands, ranging from N3 to N2O2S, was developed to mimic the activity of these enzymes. The Fe complexes discussed in this work can mimic the intradiol/extradiol catechol dioxygenase reaction mechanism. Electronic effects of the substituents in the ligand affect the Lewis acidity of the Fe center, increasing the ability to activate dioxygen and enhancing the catalytic activity of the discussed biomimetic complexes. The ligand architecture, the geometric isomers of the complexes, and the substituent steric effects significantly affect the ability to bind the substrate in a monodentate and bidentate manner. The substrate binding mode determines the preferred mechanism and, consequently, the main conversion products. The preferred mechanism of action can also be affected by the solvents and their ability to form the stable complexes with the Fe center. The electrostatic interactions of micellar media, similar to SDS, also control the intradiol/extradiol mechanisms of the catechol conversion by discussed biomimetics.


2021 ◽  
Vol 330 ◽  
pp. 115613
Author(s):  
Sadia Noor ◽  
Muhammad Babar Taj ◽  
Ambreen Ashar
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