an der Heiden Markus, Plenio Herbert
Institut für Anorganische Chemie, Petersenstrasse 18, TU Darmstadt, 64287 Darmstadt, Germany.
Chemistry. 2004 Apr 2;10(7):1789-97. doi: 10.1002/chem.200305562.
The Suzuki-Miyaura coupling of aryl chlorides and PhB(OH)(2) under biphasic conditions (DMSO/heptane) can be performed in almost quantitative yields over several cycles by means of polymeric Pd catalysts with soluble polyethylene glycol phase tags. Three sterically demanding and electron-rich phosphines 1-CH(2)Br,4-CH(2)P(1-Ad)(2)-C(6)H(4), and 2-PCy(2),2'-OH-biphenyl, and 2-PtBu(2),2'-OH-biphenyl were covalently bonded to 2000 Dalton MeOPEG-OH. The catalysts, which were formed in situ from Na(2)[PdCl(4)], the respective polymeric phosphine, KF/K(3)PO(4), and PhB(OH)(2), efficiently couple aryl chlorides at 80 degrees C at 0.5 mol % loading, resulting in a >90 % yield of the respective biphenyl derivatives. The use of polar phase tags allows the efficient recovery of palladium-phosphine catalysts by simple phase separation of the catalyst-containing DMSO solution and the product-containing n-heptane phase. The high activity (TOF) of the catalyst remains almost constant over more than five reaction cycles, which involve the catalytic reaction, separation of the product phase from the catalyst phase, and addition of new reactants to initiate the next cycle. The Buchwald type biphenyl phosphines form the most active Pd catalysts, which are 1.3-2.8 times more active than catalysts derived from diadamantyl-benzylphosphine, but appear to be less robust in the recycling experiments. There is no apparent leaching of the catalyst into the heptane solution (<0.05 %), as evidenced by spectrophotometric measurements, and contamination of the product with Pd is avoided.
在双相条件(二甲基亚砜/庚烷)下,芳基氯与苯硼酸(PhB(OH)(2))的铃木-宫浦偶联反应可以通过带有可溶性聚乙二醇相标签的聚合钯催化剂在几个循环中以几乎定量的产率进行。三种空间位阻大且富电子的膦,即1-CH(2)Br、4-CH(2)P(1-Ad)(2)-C(6)H(4)以及2-PCy(2),2'-OH-联苯和2-PtBu(2),2'-OH-联苯,被共价连接到2000道尔顿的甲氧基聚乙二醇-OH上。由Na(2)[PdCl(4)]、相应的聚合膦、KF/K(3)PO(4)和PhB(OH)(2)原位形成的催化剂,在80℃下以0.5 mol%的负载量能有效地使芳基氯发生偶联反应,得到相应联苯衍生物的产率>90%。使用极性相标签可通过简单地将含催化剂的二甲基亚砜溶液与含产物的正庚烷相进行相分离来高效回收钯-膦催化剂。在超过五个反应循环中,催化剂的高活性(TOF)几乎保持恒定,这些循环包括催化反应、将产物相与催化剂相分离以及添加新反应物以开始下一个循环。布赫瓦尔德型联苯膦形成了活性最高的钯催化剂,其活性比由二金刚烷基苄基膦衍生的催化剂高1.3 - 2.8倍,但在循环实验中似乎稳定性较差。分光光度测量表明,没有明显的催化剂溶出到庚烷溶液中(<0.05%),从而避免了产物被钯污染。