Search results for "N-2"
showing 10 items of 1881 documents
CCDC 1567348: Experimental Crystal Structure Determination
2017
Related Article: Maria-Gabriela Alexandru, Diana Visinescu, Sergiu Shova, Francesc Lloret, and Miguel Julve|2017|Inorg.Chem.|56|12594|doi:10.1021/acs.inorgchem.7b02050
CCDC 1567349: Experimental Crystal Structure Determination
2017
Related Article: Maria-Gabriela Alexandru, Diana Visinescu, Sergiu Shova, Francesc Lloret, and Miguel Julve|2017|Inorg.Chem.|56|12594|doi:10.1021/acs.inorgchem.7b02050
CCDC 2061409: Experimental Crystal Structure Determination
2021
Related Article: Erkam Cebi, Jan Klett|2021|Chem.-Eur.J.|27|12693|doi:10.1002/chem.202100912
CCDC 1984026: Experimental Crystal Structure Determination
2020
Related Article: Avishek Majumder, Nityananda Dutta, Shobhraj Haldar, Arpan Das, Luca Carrella, Manindranath Bera|2020|Inorg.Chim.Acta|510|119752|doi:10.1016/j.ica.2020.119752
CCDC 2036267: Experimental Crystal Structure Determination
2020
Related Article: Tanmoy Kumar Ghosh, Souvik Maity, Júlia Mayans, Ashutosh Ghosh|2021|Inorg.Chem.|60|438|doi:10.1021/acs.inorgchem.0c03129
CCDC 929054: Experimental Crystal Structure Determination
2013
Related Article: Antti Riisiö, Ari Väisänen, and Reijo Sillanpää|2013|Inorg.Chem.|52|8591|doi:10.1021/ic400663y
CCDC 1919442: Experimental Crystal Structure Determination
2019
Related Article: Jana Anhäuser, Rakesh Puttreddy, Lukas Glanz, Andreas Schneider, Marianne Engeser, Kari Rissanen, Arne Lützen|2019|Chem.-Eur.J.|25|12294|doi:10.1002/chem.201903164
CCDC 1919440: Experimental Crystal Structure Determination
2019
Related Article: Jana Anhäuser, Rakesh Puttreddy, Lukas Glanz, Andreas Schneider, Marianne Engeser, Kari Rissanen, Arne Lützen|2019|Chem.-Eur.J.|25|12294|doi:10.1002/chem.201903164
9,10-Phenanthrenedione as Visible-Light Photoredox Catalyst: A Green Methodology for the Functionalization of 3,4-Dihydro-1,4-Benzoxazin-2- Ones thro…
2018
A visible-light photoredox functionalization of 3,4-dihydro-1,4-benzoxazin-2-ones through a Friedel-Crafts reaction with indoles using an inexpensive organophotoredox catalyst is described. The reaction uses a dual catalytic system that is formed by a photocatalyst simple and cheap, 9,10-phenanthrenedione, and a Lewis acid, Zn(OTf)2. 5W white LEDs are used as visible-light source and oxygen from air as a terminal oxidant, obtaining the corresponding products with good yields. The reaction can be extended to other electron-rich arenes. Our methodology represents one of the most valuable and sustainable approach for the functionalization of 3,4-dihydro-1,4-benzoxazin-2-ones, as compared to th…
Implications of the EFSA Scientific Opinion on Site Directed Nucleases 1 and 2 for Risk Assessment of Genome-Edited Plants in the EU
2021
Genome editing is a set of techniques for introducing targeted changes in genomes. It may be achieved by enzymes collectively called site-directed nucleases (SDN). Site-specificity of SDNs is provided either by the DNA binding domain of the protein molecule itself or by RNA molecule(s) that direct SDN to a specific site in the genome. In contrast to transgenesis resulting in the insertion of exogenous DNA, genome editing only affects specific endogenous sequences. Therefore, multiple jurisdictions around the world have exempted certain types of genome-edited organisms from national biosafety regulations completely, or on a case-by-case basis. In the EU, however, the ruling of the Court of J…