中文名称 | 英文名称 | CAS号 | 化学式 | 分子量 |
---|---|---|---|---|
8-乙基喹啉 | 8-ethylquinoline | 19655-56-2 | C11H11N | 157.215 |
8-乙基-2-甲基喹啉 | 2-methyl-8-ethylquinoline | 72804-93-4 | C12H13N | 171.242 |
—— | 8-ethylquinoline-2-carbaldehyde | 72804-91-2 | C12H11NO | 185.225 |
8-喹啉甲酸 | 8-carboxyquinoline | 86-59-9 | C10H7NO2 | 173.171 |
8-喹啉甲酸乙酯 | quinoline-8-carboxylic acid ethylester | 25635-22-7 | C12H11NO2 | 201.225 |
8-乙基-喹啉-2-羧酸 | 8-ethyl-quinoline-2-carboxylic acid | 77739-84-5 | C12H11NO2 | 201.225 |
—— | phenyl(quinolin-8-yl)methanone | 54885-04-0 | C16H11NO | 233.269 |
—— | (4-fluorophenyl)(quinolin-8-yl)methanone | 1438559-01-3 | C16H10FNO | 251.26 |
喹啉-8-羧酸甲氧基甲基酰胺 | quinoline-8-carboxylic acid methoxymethylamide | 628711-56-8 | C12H12N2O2 | 216.239 |
中文名称 | 英文名称 | CAS号 | 化学式 | 分子量 |
---|---|---|---|---|
8-溴乙酰基喹啉 | 2-Bromo-1-quinolin-8-yl-ethanone | 860113-88-8 | C11H8BrNO | 250.095 |
2-(喹啉-8-基)乙酸 | 2-(quinolin-8-yl)acetic acid | 152150-04-4 | C11H9NO2 | 187.198 |
—— | 1-(quinolin-8-yl)ethan-1-ol | 73038-00-3 | C11H11NO | 173.214 |
—— | (1S)-1-quinolin-8-ylethanol | —— | C11H11NO | 173.214 |
—— | phenyl(quinolin-8-yl)methanone | 54885-04-0 | C16H11NO | 233.269 |
—— | quinolin-8-yl(p-tolyl)methanone | —— | C17H13NO | 247.296 |
—— | 1-[8]quinolyl-2-diethylamino-ethanol | 5422-55-9 | C15H20N2O | 244.337 |
—— | (4-chlorophenyl)(quinolin-8-yl)methanone | 1438558-97-4 | C16H10ClNO | 267.714 |
—— | (4-fluorophenyl)(quinolin-8-yl)methanone | 1438559-01-3 | C16H10FNO | 251.26 |
—— | (quinolin-8-yl)(m-tolyl)methanone | 1438558-67-8 | C17H13NO | 247.296 |
—— | (4-bromophenyl)(quinolin-8-yl)methanone | 1438559-05-7 | C16H10BrNO | 312.166 |
In this study, we present an investigation into various nickel phosphite and phosphite–phosphine complexes for use in the Mizoroki–Heck and Suzuki–Miyaura cross-coupling reactions and the ammonia arylation reaction. In these coupling reactions, it was discovered that the Ni[P(OEt)3]4, (dppf)Ni[P(OPh)3]2, and (binap)Ni[P(OPh)3]2 catalysts were the most effective. In addition, an optimisation process for these catalytic systems as well as functional group compatibility are discussed.