Mitsudo Koichi
Division of Applied Chemistry, Graduate School of Natural Science and Technology, Okayama University, 3-1-1 Tsushima-naka, Kita-ku, Okayama, 700-8530, Japan.
Chem Rec. 2021 Sep;21(9):2269-2276. doi: 10.1002/tcr.202100033. Epub 2021 Mar 18.
Electrochemical reactions are rapidly gaining attention today as a powerful and environmentally benign reaction processes for organic synthesis. We found that the electro-oxidation of palladium acetate afforded cationic palladium species and thus-generated cationic Pd species were efficient mediators for electro-oxidative coupling reactions. Homo-coupling of arylboronic acids and terminal alkynes proceeded efficiently to afford biaryls and butadiyne, respectively. Cross-coupling reactions between terminal alkynes and arylboronic acids were also achieved with the use of a Ag anode. As an advantage of electrochemical reactions, we developed a sequential reaction system switched between oxidative and neutral conditions by the on/off application of electricity, and several π-extended butadiynes were obtained in one-sequence by the system. Electrochemical intramolecular C-S coupling for the synthesis of thienoacene was also developed. The use of Bu NBr as a halogen mediator was essential for the reaction.
如今,电化学反应作为一种用于有机合成的强大且环境友好的反应过程,正迅速受到关注。我们发现醋酸钯的电氧化可生成阳离子钯物种,由此产生的阳离子钯物种是电氧化偶联反应的有效介质。芳基硼酸和末端炔烃的均偶联反应分别高效进行,得到了联芳基和丁二炔。使用银阳极也实现了末端炔烃与芳基硼酸之间的交叉偶联反应。作为电化学反应的一个优势,我们开发了一种通过通电/断电在氧化和中性条件之间切换的顺序反应体系,通过该体系可一步合成几种π-扩展的丁二炔。还开发了用于合成并四苯的电化学分子内C-S偶联反应。使用Bu NBr作为卤素介质对该反应至关重要。