Tajima Toshiki, Fuchigami Toshio
Department of Electronic Chemistry, Tokyo Institute of Technology, Nagatsuta, Midori-ku, Yokohama, Japan.
Chemistry. 2005 Oct 21;11(21):6192-6. doi: 10.1002/chem.200500340.
We have successfully developed a novel environmentally friendly electrolytic system using recyclable solid-supported bases for in situ generation of a supporting electrolyte from methanol as a solvent. It was found that solid-supported bases are electrochemically inactive at an electrode surface. It was also found that solid-supported bases dissociate methanol into methoxide anions and protons. Therefore, in the presence of solid-supported bases, it was clarified that methanol serves as both a solvent and a supporting electrolyte generated in situ. Anodic methoxylation of various compounds with solid-supported bases was carried out to provide the corresponding methoxylated products in good to excellent yields with a few exceptions. The methoxylated products and the solid-supported bases were easily separated by only filtration, and the desired pure methoxylated products were readily isolated simply by concentration of the filtrates. The separated and recovered solid-supported bases were recyclable for several times.
我们成功开发了一种新型环保电解系统,该系统使用可回收的固体负载碱,以甲醇为溶剂原位生成支持电解质。研究发现,固体负载碱在电极表面无电化学活性。还发现固体负载碱可将甲醇解离为甲氧基阴离子和质子。因此,在固体负载碱存在的情况下,已明确甲醇既作为溶剂又作为原位生成的支持电解质。使用固体负载碱对各种化合物进行阳极甲氧基化反应,除少数例外,均能以良好至优异的产率得到相应的甲氧基化产物。甲氧基化产物和固体负载碱仅通过过滤即可轻松分离,只需浓缩滤液就能轻松分离出所需的纯甲氧基化产物。分离并回收的固体负载碱可多次循环使用。