Shaw Paul A, Rourke Jonathan P
Department of Chemistry, Warwick University, Coventry, CV4 7AL, UK.
Dalton Trans. 2017 Apr 5;46(14):4768-4776. doi: 10.1039/c7dt00328e.
The oxidative addition of three different organic halides RX to the non-symmetric platinum(ii) mer coordinated dicyclometallated C^N^C complex 1 yielded short-lived six-coordinate platinum(iv) complexes 2(R) (R = Me, allyl, Bn), with the incoming groups trans across the platinum centre. A spontaneous reductive coupling reaction then occurred with, in each case, a completely chemoselective sp-sp coupling, and exclusively gave R-3, with the newly introduced R group bonded to the previously cyclometallated aryl ring. Following a recyclometallation reaction, the oxidative addition/reductive elimination cycle was repeated and gave the same selectivity. A one-pot route to doubly alkylating the aryl ring was developed. The observed selectivity might have been predicted on the normal basis of a steric barrier associated with non-flat sp hybridised groups, but we suggest that it arises from the stereochemistry at the metal, and the orientation of the ligands.
三种不同的有机卤化物RX与非对称铂(II)面式配位的双环金属化C^N^C配合物1发生氧化加成反应,生成寿命较短的六配位铂(IV)配合物2(R)(R = 甲基、烯丙基、苄基),进入的基团在铂中心呈反式排列。然后发生自发的还原偶联反应,在每种情况下,都有完全化学选择性的sp-sp偶联,并且仅生成R-3,新引入的R基团与先前环金属化的芳基环相连。经过再环金属化反应后,氧化加成/还原消除循环重复进行,并给出相同的选择性。开发了一种对芳基环进行双烷基化的一锅法路线。观察到的选择性可能基于与非平面sp杂化基团相关的空间位垒按常规预测,但我们认为它源于金属的立体化学以及配体的取向。