Dearomatizationr eactions represent av ersatile approach for the preparation of three-dimensionally (3D) privileged cyclic moieties from simple planar aromatic compounds.H owever, exogeneous oxidants are required for most of the radical ando xidative dearomatizations.T herefore,s ustainable proceduresa re in high demand, especially those in the absence of external oxidizing reagents.F ortunately, electrolytic dearomatization protocols can fulfill the abover equirements due to the manipulation of traceless electrons insteado fc hemicals during the processes. Nevertheless,s ustainable electrochemical dearomative transformationsh ave been farl ess frequently investigated than the well-developed chemical dearomatizationr eactions.H erein, we summarize representativeb reakthroughs in the electrochemical dearomative transformation of indoles,f urans and activated arenes (phenols anda nisoles) for the synthesis of complicated skeletons.H opefully,t his interesting "simplicity-to-complexity" synthetic logic will inspire more innovations from the electroorganic community.Scheme 28. Electrochemical dearomatizationo fthe phenylpropenoid system for generating quinone methide dimers.