Electrochemical C−H functionalization is a rapidly growing area of interest in organic synthesis. To achieve maximum atom economy, the flow electrolysis process is more sustainable. This allows shorter reaction times, safer working environments, and better selectivities. Using this technology, the problem of overoxidation can be reduced and less emergence of side products or no side products are possible. Flow electro-reactors provide high surface-to-volume ratios and contain electrodes that are closely spaced where the diffusion layers overlap to give the desired product, electrochemical processes can now be managed without the need for a deliberately added supporting electrolyte. Considering the importance of flow electrochemical C−H func...
The past century has witnessed tremendous advancements in both organic methodology and total synthes...
In this chapter, we give an overview of the use of continuous-flow reactors for C. H activation chem...
The development of new catalytic methods to functionalize carbon–hydrogen (C–H) bonds continues to ...
C–H functionalization chemistry is one of the most vibrant research areas within synthetic organic c...
This personal account provides an overview of work conducted in my research group, and through colla...
Despite the long history of electroorganic synthesis, it did not participate in the mainstream of ch...
Electrochemistry is the chemistry that studies all those processes that involve the transfer of elec...
A revitalization of organic electrosynthesis has incited the organic chemistry community to adopt el...
Electrosynthesis is an old method currently moving again in the focus of organic synthesis. Some lim...
Methods and techniques that can be used to perform various chemical transformations in an environmen...
An electrochemical strategy for rapid generation of the highly reactive species necessary for C−H bo...
近年来,有机电化学合成已经成为有机合成化学中构造碳碳及碳杂键的重要方法. 该文主要综述了目前电化学合成的主要研究方向,着重介绍了我们课题组在电化学合成中利用碘自由基,促进苯乙酮α-C&md...
Transition metal-catalysed processes have been widely used for the functionalization of inert C−H bo...
N-centered radicals are versatile reaction intermediates that can react with various π systems to co...
A microreactor for electrochemical synthesis has been designed and fabricated. It has been shown tha...
The past century has witnessed tremendous advancements in both organic methodology and total synthes...
In this chapter, we give an overview of the use of continuous-flow reactors for C. H activation chem...
The development of new catalytic methods to functionalize carbon–hydrogen (C–H) bonds continues to ...
C–H functionalization chemistry is one of the most vibrant research areas within synthetic organic c...
This personal account provides an overview of work conducted in my research group, and through colla...
Despite the long history of electroorganic synthesis, it did not participate in the mainstream of ch...
Electrochemistry is the chemistry that studies all those processes that involve the transfer of elec...
A revitalization of organic electrosynthesis has incited the organic chemistry community to adopt el...
Electrosynthesis is an old method currently moving again in the focus of organic synthesis. Some lim...
Methods and techniques that can be used to perform various chemical transformations in an environmen...
An electrochemical strategy for rapid generation of the highly reactive species necessary for C−H bo...
近年来,有机电化学合成已经成为有机合成化学中构造碳碳及碳杂键的重要方法. 该文主要综述了目前电化学合成的主要研究方向,着重介绍了我们课题组在电化学合成中利用碘自由基,促进苯乙酮α-C&md...
Transition metal-catalysed processes have been widely used for the functionalization of inert C−H bo...
N-centered radicals are versatile reaction intermediates that can react with various π systems to co...
A microreactor for electrochemical synthesis has been designed and fabricated. It has been shown tha...
The past century has witnessed tremendous advancements in both organic methodology and total synthes...
In this chapter, we give an overview of the use of continuous-flow reactors for C. H activation chem...
The development of new catalytic methods to functionalize carbon–hydrogen (C–H) bonds continues to ...