Chuang Shih-Ching, Lee Don-Dar, Santhosh K. C., Cheng Chien-Hong
Department of Chemistry, National Tsing Hua University, Hsinchu, Taiwan 30043.
J Org Chem. 1999 Nov 26;64(24):8868-8872. doi: 10.1021/jo991101m.
Treatment of phosphites (P(OR)(3)) and MeO(2)CCCCO(2)Me with C(60) affords the corresponding fullerene derivatives (1, R = Me; 2, R = Et; 3, R = n-Bu) consisting of a phosphite ylide group and a cyclopropane ring on the fullerene moiety in high yields. NMR data indicate that all phosphite ylides 1-3 exist as mixtures of E and Z isomers. Under similar reaction conditions, the reaction of phosphinite PPh(2)(OMe) and MeO(2)CCCCO(2)Me with C(60) gives ylide 4. Ylides 1-3 readily undergo hydrolysis with HBr to give corresponding phosphonates 5-7 in excellent yields, while ylide 4 reacts with hydrobromic acid to afford phosphine oxide 8. A mechanism is proposed to account for the formation of these phosphonate derivatives. Further treatment of phosphonate derivative 5 with trimethylsilyl iodide followed by water gave phosphonic acid derivative 9 in 83% yield.
用C(60)处理亚磷酸酯(P(OR)(3))和MeO(2)CCCCO(2)Me,可高产率地得到相应的富勒烯衍生物(1,R = Me;2,R = Et;3,R = n-Bu),其在富勒烯部分由一个亚磷酸酯叶立德基团和一个环丙烷环组成。核磁共振数据表明,所有亚磷酸酯叶立德1 - 3均以E和Z异构体的混合物形式存在。在相似的反应条件下,次膦酸酯PPh(2)(OMe)和MeO(2)CCCCO(2)Me与C(60)反应生成叶立德4。叶立德1 - 3很容易与HBr发生水解反应,以优异的产率得到相应的膦酸酯5 - 7,而叶立德4与氢溴酸反应得到氧化膦8。提出了一种机理解释这些膦酸酯衍生物的形成。膦酸酯衍生物5用碘代三甲基硅烷进一步处理,然后加水,以83%的产率得到膦酸衍生物9。