Catalysts for Claisen rearrangement have been intensively studied to overcome the need for high temperature. However, previous studies have encountered challenges, such as the need for heating, a long reaction time, and/or the need for equivalent amounts of catalyst. In this study, we introduce an effective electrogenerated boron-based Lewis acid catalyst for the aromatic Claisen rearrangement, which proceeds in a few minutes at ambient temperature.
View Article and Find Full Text PDFThe branches of the external carotid artery can show variation, and common trunks are occasionally found. Because the common trunks such as the thyrolingual, linguofacial, and thyrolinguofacial trunks are formed from two or all of the superior thyroid artery, lingual artery, and facial arteries, maxillofacial trunks are extremely rare. We report a rare case with the maxillofacial and thyrolingual trunks identified by three-dimensional computed tomography angiography.
View Article and Find Full Text PDFThe production of cyclic amines, which are vital to the pharmaceutical industry, relies on energy-intensive thermochemical hydrogenation. Herein, we demonstrate the electrocatalytic hydrogenation of nitrogen-containing aromatic compounds, specifically pyridine, at ambient temperature and pressure via a membrane electrode assembly with an anion-exchange membrane. We synthesized piperidine using a carbon-supported rhodium catalyst, achieving a current density of 25 mA cm and a current efficiency of 99% under a circular flow until 5 F mol.
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