Tanaka, Naoki’s team published research in Chemical Communications (Cambridge, United Kingdom) in 2021 | CAS: 100-48-1

4-Cyanopyridine(cas: 100-48-1) belongs to pyridine. The basicity and metallophilic high donor number of these π-deficient systems has long favored them as ligands in metal catalysis. The last decade saw pyridine assume a stronger role as functional group for directed C–H oxidation/activation.Recommanded Product: 4-Cyanopyridine

Recommanded Product: 4-CyanopyridineIn 2021 ,《Electron doping of single-walled carbon nanotubes using pyridine-boryl radicals》 appeared in Chemical Communications (Cambridge, United Kingdom). The author of the article were Tanaka, Naoki; Hamasuna, Aoi; Uchida, Takuto; Yamaguchi, Ryohei; Ishii, Taiki; Staylkov, Aleksandar; Fujigaya, Tsuyohiko. The article conveys some information:

Pyridine-boryl (py-boryl) radicals serve as efficient electron-doping reagents for single-walled carbon nanotubes (SWCNTs). The doping mechanism comprises electron transfer from the py-boryl radical to the SWCNT. The formation of a stable py-boryl cation is essential for efficient doping; the captodative effect of the py-boryl cation is important to this process. The experimental process involved the reaction of 4-Cyanopyridine(cas: 100-48-1Recommanded Product: 4-Cyanopyridine)

4-Cyanopyridine(cas: 100-48-1) belongs to pyridine. The basicity and metallophilic high donor number of these π-deficient systems has long favored them as ligands in metal catalysis. The last decade saw pyridine assume a stronger role as functional group for directed C–H oxidation/activation.Recommanded Product: 4-Cyanopyridine

Referemce:
Pyridine – Wikipedia,
Pyridine | C5H5N – PubChem