Reduction of Biginelli compounds by LiAlH4: a rapid access to molecular diversity

RSC Advances ◽  
2016 ◽  
Vol 6 (116) ◽  
pp. 115058-115067 ◽  
Author(s):  
Dragan B. Zlatković ◽  
Niko S. Radulović

The reduction of Biginelli compounds by LiAlH4 provides a rapid access to molecular diversity.

2021 ◽  
Vol 25 ◽  
Author(s):  
Rekha Sangwan ◽  
Pintu Kumar Mandala

: In carbohydrate chemistry, the synthesis of complex saccharides with well-defined structures is the most formidable process as it is quite strenuous to isolate carbohydrates in acceptable purity and amounts from natural sources. Therefore, complex saccharides with well-defined structures are often most conveniently accessed through chemical syntheses. This review mainly focuses on the methodologies for one-pot glycosylation into the complex glycans from the non-reducing end to reducing end and vice versa, orthogonal, preactivation based, photochemical as well as hybrid one-pot glycosylation. The main goal of this review is to be able to rapidly synthesize biologically relevant glycans in carbohydrates that can be implemented to research in carbohydrate-based vaccine development, diagnostics, as well as drug discovery.


2019 ◽  
Author(s):  
De-Wei Gao ◽  
Yang Gao ◽  
Huiling Shao ◽  
Tian-Zhang Qiao ◽  
Xin Wang ◽  
...  

Enantioenriched <i>α</i>-aminoboronic acids play a unique role in medicinal chemistry and have emerged as privileged pharmacophores in proteasome inhibitors. Additionally, they represent synthetically useful chiral building blocks in organic synthesis. Recently, CuH-catalyzed asymmetric alkene hydrofunctionalization has become a powerful tool to construct stereogenic carbon centers. In contrast, applying CuH cascade catalysis to achieve reductive 1,1-difunctionalization of alkynes remains an important, but largely unaddressed, synthetic challenge. Herein, we report an efficient strategy to synthesize <i>α</i>-aminoboronates <i>via </i>CuH-catalyzed hydroboration/hydroamination cascade of readily available alkynes. Notably, this transformation selectively delivers the desired 1,1-heterodifunctionalized product in favor of alternative homodifunctionalized, 1,2-heterodifunctionalized, or reductively monofunctionalized byproducts, thereby offering rapid access to these privileged scaffolds with high chemo-, regio- and enantioselectivity.<br>


2020 ◽  
Vol 67 (4) ◽  
pp. 286 ◽  
Author(s):  
Iwona Jasser ◽  
Iwona Kostrzewska-Szlakowska ◽  
Jan Kwiatowski ◽  
Dovutsho Navruzshoev ◽  
Małgorzata Suska-Malawska ◽  
...  

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