Abstract Direct functionalization of C(sp3)–H bonds allows rapid access to valuable products, starting from simple petrochemicals. However, the chemical transformation of non-activated methylene groups remains challenging for organic synthesis. Here, we report a general electrochemical method for the oxidation of C(sp3)–H and C(sp2)–H bonds, in which cyclic alkanes and (cyclic) olefins are converted into cycloaliphatic ketones as well as aliphatic (di)carboxylic acids. This resource-friendly method is based on nitrate salts in a dual role as anodic mediator and supporting electrolyte, which can be recovered and recycled. Reducing molecular oxygen as a cathodic counter reaction leads to efficient convergent use of both electrode reactions. B...
We report a set of electrochemically regulated protocols for the divergent synthesis of ketones and ...
Herein, we provide eco-friendly and safely operated electrocatalytic methods for the selective oxida...
Palladium-catalyzed electrochemical C–H functionalization reactions have emerged as attractive tools...
Methods and techniques that can be used to perform various chemical transformations in an environmen...
This thesis describes the exploration and development of electrochemical methods for the generatio...
The significance of α-functionalization of carbonyl compounds arises from its frequent use in synthe...
We describe the first electrochemical activation of D–A cyclopropanes and D–A cyclobutanes leading a...
A new electrochemical methodology has been developed for the generation of oxycarbonyl radicals unde...
Herein, we describe a mild and efficient electrochemical method for cycloaddition reactions of alken...
A new electrochemical methodology has been developed for the generation of oxycarbonyl radicals unde...
The nitrate-mediated oxidation of simple alkanols to the corresponding ketones is described. Except ...
N-acyliminium ions are useful reactive synthetic intermediates in a variety of important carbon–carb...
The development of metal-free transformations in org. synthesis offers significant potential economi...
Part A: Oxo-rhenium-catalyzed Biomimetic Cyclization Biomimetic cyclizations are remarkable tools be...
Herein we report an electrochemical approach for the deconstructive functionalization of cycloalkano...
We report a set of electrochemically regulated protocols for the divergent synthesis of ketones and ...
Herein, we provide eco-friendly and safely operated electrocatalytic methods for the selective oxida...
Palladium-catalyzed electrochemical C–H functionalization reactions have emerged as attractive tools...
Methods and techniques that can be used to perform various chemical transformations in an environmen...
This thesis describes the exploration and development of electrochemical methods for the generatio...
The significance of α-functionalization of carbonyl compounds arises from its frequent use in synthe...
We describe the first electrochemical activation of D–A cyclopropanes and D–A cyclobutanes leading a...
A new electrochemical methodology has been developed for the generation of oxycarbonyl radicals unde...
Herein, we describe a mild and efficient electrochemical method for cycloaddition reactions of alken...
A new electrochemical methodology has been developed for the generation of oxycarbonyl radicals unde...
The nitrate-mediated oxidation of simple alkanols to the corresponding ketones is described. Except ...
N-acyliminium ions are useful reactive synthetic intermediates in a variety of important carbon–carb...
The development of metal-free transformations in org. synthesis offers significant potential economi...
Part A: Oxo-rhenium-catalyzed Biomimetic Cyclization Biomimetic cyclizations are remarkable tools be...
Herein we report an electrochemical approach for the deconstructive functionalization of cycloalkano...
We report a set of electrochemically regulated protocols for the divergent synthesis of ketones and ...
Herein, we provide eco-friendly and safely operated electrocatalytic methods for the selective oxida...
Palladium-catalyzed electrochemical C–H functionalization reactions have emerged as attractive tools...