Alsaidi, Hattab et al. published their research in Synthesis in 1980 | CAS: 4783-68-0

2-Phenoxypyridine (cas: 4783-68-0) belongs to pyridine derivatives. Pyridine’s the lone pair does not contribute to the aromatic system but importantly influences the chemical properties of pyridine, as it easily supports bond formation via an electrophilic attack. Pyridine groups exist in countless molecules, and their applications include catalysis, drug design, molecular recognition, and natural product synthesis.Recommanded Product: 2-Phenoxypyridine

Convenient synthesis of heteroaryl phenyl ethers from chloropyridines and chloroquinolines using phase-transfer catalysis was written by Alsaidi, Hattab;Gallo, Roger;Metzger, Jacques. And the article was included in Synthesis in 1980.Recommanded Product: 2-Phenoxypyridine This article mentions the following:

Phenoxypyridines I (R = 3-O2N, 5-O2N, 3-Cl, H; R1 = H, 4-Cl, 4-Et, 4-MeO, 2,6-Me2, 3,4-Me2, 3,5-Me2, 2,3-Me2, 4-Me2CH) were obtained in 34-93% yield by treating 2-chloropyridines with R1C6H4OH in the presence of Bu4N+.Cl. II and III (R1 = H, 2,6-Me2, 4-MeO, 4-Cl, 2,3-Me2) were similarly obtained in 20-98% yield. In the experiment, the researchers used many compounds, for example, 2-Phenoxypyridine (cas: 4783-68-0Recommanded Product: 2-Phenoxypyridine).

2-Phenoxypyridine (cas: 4783-68-0) belongs to pyridine derivatives. Pyridine’s the lone pair does not contribute to the aromatic system but importantly influences the chemical properties of pyridine, as it easily supports bond formation via an electrophilic attack. Pyridine groups exist in countless molecules, and their applications include catalysis, drug design, molecular recognition, and natural product synthesis.Recommanded Product: 2-Phenoxypyridine

Referemce:
Pyridine – Wikipedia,
Pyridine | C5H5N – PubChem