Harada Yasuyuki, Nakanishi Jun, Fujihara Hirokazu, Tobisu Mamoru, Fukumoto Yoshiya, Chatani Naoto
Department of Applied Chemistry, Faculty of Engineering, Osaka University, Suita, Osaka 565-0871, Japan.
J Am Chem Soc. 2007 May 2;129(17):5766-71. doi: 10.1021/ja070107n. Epub 2007 Apr 7.
The Rh-catalyzed reaction of alkynes with 2-bromophenylboronic acids involves carbonylative cyclization to give indenones. The key steps in the reaction involve the addition of an arylrhodium(I) species to an alkyne and the oxidative addition of C-Br bonds on the adjacent phenyl ring to give vinylrhodium(I) species II. The regioselectivity depends on both the electronic and the steric nature of the substituents on the alkynes. A bulky group and an electron-withdrawing group favor the -position of indenones. In the case of silyl- or ester-substituted alkynes, the regioselectivity is extremely high. The selectivity increases in the order SiMe3 > COOR >> aryl >> alkyl. The reaction of norbornene with 2-bromophenylboronic acids under 1 atm of CO gives the corresponding indanone derivative. The reaction of alkynes with 2-bromophenylboronic acids under nitrogen gives naphthalene derivatives, in which two molecules of alkynes are incorporated. A vinylrhodium complex similar to II can also be generated by a different route by employing 2-bromophenyl(trimethylsilyl)acetylene and arylboronic acids in the presence of Rh(I) complex as the catalyst, resulting in the formation of indenones. The reaction of 1-(2-bromophenyl)-hept-2-yn-1-one with PhB(OH)2 in the presence of Rh(I) complex also resulted in carbonylative cyclization to give an indan-1,3-dione derivative.
铑催化的炔烃与2-溴苯硼酸的反应涉及羰基化环化反应,生成茚满酮。该反应的关键步骤包括芳基铑(I)物种加成到炔烃上,以及相邻苯环上C-Br键的氧化加成,生成乙烯基铑(I)物种II。区域选择性取决于炔烃上取代基的电子性质和空间性质。体积大的基团和吸电子基团有利于茚满酮的α-位。对于硅基或酯基取代的炔烃,区域选择性极高。选择性按SiMe3 > COOR >> 芳基 >> 烷基的顺序增加。降冰片烯与2-溴苯硼酸在1个大气压的CO下反应生成相应的茚满酮衍生物。炔烃与2-溴苯硼酸在氮气气氛下反应生成萘衍生物,其中引入了两分子的炔烃。通过在Rh(I)配合物作为催化剂存在下使用2-溴苯基(三甲基硅基)乙炔和芳基硼酸,也可以通过不同的途径生成类似于II的乙烯基铑配合物,从而形成茚满酮。1-(2-溴苯基)-庚-2-炔-1-酮与PhB(OH)2在Rh(I)配合物存在下反应也导致羰基化环化,生成茚满-1,3-二酮衍生物。