恒电位仪
背景(考古学)
计算机科学
电催化剂
组合化学
纳米技术
配体(生物化学)
简单(哲学)
标杆管理
化学
材料科学
电化学
物理化学
电极
认识论
生物
哲学
业务
古生物学
营销
受体
生物化学
作者
Maximilian D. Palkowitz,Gabriele Laudadio,Simon Kolb,Jin Ho Choi,Martins S. Oderinde,Tamara El‐Hayek Ewing,Philippe N. Bolduc,TeYu Chen,Hao Zhang,Peter T. W. Cheng,Benxiang Zhang,Michael D. Mandler,Jeremy M. Richter,Michael R. Collins,Ryan Schioldager,Murali Dhar,Benjamin Vokits,Yeheng Zhu,Pierre‐Georges Echeverria,Michael A. Poss
标识
DOI:10.26434/chemrxiv-2022-rpnp8
摘要
A useful protocol for achieving decarboxylative cross coupling (DCC) of redox-active esters (RAE, isolated or generated in situ) and halo(hetero)arenes is reported. This pragmatically focused study employs a unique Ag-Ni electrocatalytic platform to overcome numerous limitations that have plagued this strategically powerful transformation. In its optimized form coupling partners can be combined in a surprisingly simple way: open to the air, technical grade solvents, an inexpensive ligand and Ni source, substoichiometric AgNO3, proceeding at room temperature with a simple commercial potentiostat. Most importantly all of the results are placed into context by benchmarking with state-of-the-art methods. Applications are presented that simplify synthesis and rapidly enable access to challenging chemical space. Finally, adaptation to multiple scale regimes, ranging from parallel mg-based synthesis to decagram recirculating flow is presented
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