Leibniz-Institut für Katalyse e.V. an der Universität Rostock, Albert-Einstein Straße 29a, Rostock 18059, Germany.
Evonik Performance Materials GmbH, Paul-Baumann-Straße 1, Marl 45772, Germany.
Nat Commun. 2017 Jan 25;8:14117. doi: 10.1038/ncomms14117.
Carbonylation reactions of alkenes constitute the most important industrial processes in homogeneous catalysis. Despite the tremendous progress in this transformation, the development of advanced catalyst systems to improve their activity and widen the range of feedstocks continues to be essential for new practical applications. Herein a palladium catalyst based on 1,2-bis((tert-butyl(pyridin-2-yl)phosphanyl)methyl)benzene L3 (pybpx) is rationally designed and synthesized. Application of this system allows a general alkoxycarbonylation of sterically hindered and demanding olefins including all kinds of tetra-, tri- and 1,1-disubstituted alkenes as well as natural products and pharmaceuticals to the desired esters in excellent yield. Industrially relevant bulk ethylene is functionalized with high activity (TON: >1,425,000; TOF: 44,000 h for initial 18 h) and selectivity (>99%). Given its generality and efficiency, we expect this catalytic system to immediately impact both the chemical industry and research laboratories by providing a practical synthetic tool for the transformation of nearly any alkene into a versatile ester product.
烯烃的羰基化反应是均相催化中最重要的工业过程。尽管在这一转变中取得了巨大的进展,但为了新的实际应用,开发先进的催化剂体系以提高其活性和拓宽原料范围仍然至关重要。在此,设计并合理合成了基于 1,2-双((叔丁基(吡啶-2-基)膦基)甲基)苯 L3 (pybpx) 的钯催化剂。该体系的应用允许包括各种四取代、三取代和 1,1-二取代烯烃以及天然产物和药物在内的空间位阻大且要求苛刻的烯烃进行一般的烷氧基羰基化反应,以优异的收率得到所需的酯。工业相关的大宗乙烯具有高活性(TON:>1425000;初始 18 小时的 TOF:44000 h)和选择性(>99%)。鉴于其通用性和效率,我们预计该催化体系将通过为几乎任何烯烃转化为多功能酯产物提供实用的合成工具,立即对化学工业和研究实验室产生影响。