Department of Chemistry, University of Toronto, 80 St. George St. Toronto, Ontario, CanadaM5S 3H6.
Dalton Trans. 2010 May 14;39(18):4285-94. doi: 10.1039/c001133a. Epub 2010 Mar 25.
The impact of substituent changes on phosphorus and boron-containing frustrated Lewis pairs (FLPs) has been examined. The phosphites (RO)(3)P R = Me, Ph form classical Lewis acid-base adducts of the formula (RO)(3)PB(C(6)F(5))(3) R = Me ; R = Ph , whereas P(O-2,4-(t)Bu(2)C(6)H(3))(3) and P(O-2,6-Me(2)C(6)H(3))(3) generate FLPs. Nonetheless, these latter combinations do not react with H(2). The more basic phosphinite tBu(2)POR, R = tBu reacts with B(C(6)F(5))(3) to give (tBu(2)(H)PO)B(C(6)F(5))(3). The related species tBu(2)POR, R = Ph ; 2,6-Me(2)C(6)H(3) showed no reaction with B(C(6)F(5))(3) but the FLPs react under H(2) (4 atm) to give [tBu(2)P(OR)H][HB(C(6)F(5))(3)] R = Ph and 2,6-Me(2)C(6)H(3). Similarly, tBu(2)PCl in combination with B(C(6)F(5))(3), generates an FLP that upon addition of H(2), gives [tBu(2)PH(2)][ClB(C(6)F(5))(3)] albeit in low yield. The diborane 1,4-(C(6)F(5))(2)B(C(6)F(4))B(C(6)F(5))(2) in combination with either tBu(3)P or (C(6)H(2)Me(3))(3)P generates FLPs that react with H(2) to give R(3)PH[1,4-(C(6)F(5))(2)HB(C(6)F(4))BH(C(6)F(5))(2)] (R = tBu , C(6)H(2)Me(3)). Similarly PhB(C(6)F(5))(2) and tBu(3)P react with H(2) giving [tBu(3)PH][HBPh(C(6)F(5))(2)] . The combination of B(OC(6)F(5))(3) and PtBu(3) also generate an FLP which reacts with H(2) to give [HPtBu(3)][B(OC(6)F(5))(4)] , the product of substituent redistribution. The boronic esters, (C(6)H(4)O(2))BC(6)F(5), (C(6)H(3)FO(2))BC(6)F(5) and (C(6)F(4)O(2))BC(6)F(5), and the borate esters B(OC(6)H(3)(CF(3))(2))(3), B(OC(6)H(2)F(3))(3) and B(OC(6)H(4)CF(3))(3) were prepared and shown to generate FLPs with tBu(3)P or (C(6)H(2)Me(3))(3)P. Nonetheless, no reaction with H(2) was observed for . Collectively these data suggest that there is a threshold of combined Lewis acidity and basicity that is required to effect the splitting of H(2).
取代基变化对磷和硼的路易斯酸对(FLP)的影响已经得到了研究。亚磷酸酯(RO)(3)P R = Me,Ph 形成了经典的路易斯酸碱加合物(RO)(3)PB(C(6)F(5))(3)R = Me;R = Ph,而 P(O-2,4-(t)Bu(2)C(6)H(3))(3)和 P(O-2,6-Me(2)C(6)H(3))(3)则生成 FLP。尽管如此,这些组合并没有与 H(2)反应。更碱性的膦亚磷酸酯 tBu(2)POR,R = tBu 与 B(C(6)F(5))(3)反应生成(tBu(2)(H)PO)B(C(6)F(5))(3)。相关的化合物 tBu(2)POR,R = Ph;2,6-Me(2)C(6)H(3)与 B(C(6)F(5))(3)没有反应,但 FLP 在 H(2)(4 大气压)下反应生成 [tBu(2)P(OR)H][HB(C(6)F(5))(3)]R = Ph 和 2,6-Me(2)C(6)H(3)。同样,tBu(2)PCl 与 B(C(6)F(5))(3)结合生成 FLP,在添加 H(2)后,生成 [tBu(2)PH(2)][ClB(C(6)F(5))(3)],尽管产率较低。二硼烷 1,4-(C(6)F(5))(2)B(C(6)F(4))B(C(6)F(5))(2)与 tBu(3)P 或(C(6)H(2)Me(3))(3)P 结合生成 FLP,与 H(2)反应生成 [R(3)PH](2)[1,4-(C(6)F(5))(2)HB(C(6)F(4))BH(C(6)F(5))(2)](R = tBu,C(6)H(2)Me(3))。同样,PhB(C(6)F(5))(2)和 tBu(3)P 与 H(2)反应生成 [tBu(3)PH][HBPh(C(6)F(5))(2)]。B(OC(6)F(5))(3)和 PtBu(3)的组合也生成了一个 FLP,与 H(2)反应生成 [HPtBu(3)][B(OC(6)F(5))(4)],这是取代基重排的产物。硼酸酯(C(6)H(4)O(2))BC(6)F(5),(C(6)H(3)FO(2))BC(6)F(5)和(C(6)F(4)O(2))BC(6)F(5)以及硼酸酯 B(OC(6)H(3)(CF(3))(2))(3),B(OC(6)H(2)F(3))(3)和 B(OC(6)H(4)CF(3))(3)已被制备并显示与 tBu(3)P 或(C(6)H(2)Me(3))(3)P 生成 FLP。尽管如此,与 H(2)没有反应。这些数据表明,需要有一个路易斯酸和碱性的综合阈值才能使 H(2)分裂。