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Boronate Covalent and Hybrid Organic Frameworks Featuring P(III) and P=O Lewis Base Sites.
Pacholak P, Gontarczyk K, Kamiński R, Durka K, Luliński S. Pacholak P, et al. Chemistry. 2020 Oct 6;26(56):12688. doi: 10.1002/chem.202002983. Epub 2020 Sep 2. Chemistry. 2020. PMID: 32881087
Invited for the cover of this issue is Sergiusz Lulinski and his co-workers from Warsaw University of Technology and University of Warsaw. The image depicts a journey through the interior of the porous Covalent Organic Framework containing phosphorus and boron centr …
Invited for the cover of this issue is Sergiusz Lulinski and his co-workers from Warsaw University of Technology and University of Wa …
Development of structurally extended benzosiloxaboroles - synthesis and in vitro biological evaluation.
Pacholak P, Krajewska J, Wińska P, Dunikowska J, Gogowska U, Mierzejewska J, Durka K, Woźniak K, Laudy AE, Luliński S. Pacholak P, et al. RSC Adv. 2021 Jul 20;11(41):25104-25121. doi: 10.1039/d1ra04127d. eCollection 2021 Jul 19. RSC Adv. 2021. PMID: 35478884 Free PMC article.
The synthesis of related chloropyridine-2-yloxy substituted benzosiloxaboroles was accomplished by a standard approach involving silylation/boronation of appropriate heterodiaryl ethers. Investigation of biological activity of obtained compounds revealed that some benzoate …
The synthesis of related chloropyridine-2-yloxy substituted benzosiloxaboroles was accomplished by a standard approach involving silylation/ …