Koizumi Hiroki, Takeuchi Katsuhiko, Matsumoto Kazuhiro, Fukaya Norihisa, Sato Kazuhiko, Uchida Masahito, Matsumoto Seiji, Hamura Satoshi, Choi Jun-Chul
National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba, Ibaraki, Japan.
Tosoh Corporation, Advanced Materials Research Laboratory, Ayase, Kanagawa, Japan.
Commun Chem. 2021 May 14;4(1):66. doi: 10.1038/s42004-021-00505-2.
To reduce anthropogenic carbon dioxide (CO) emissions, it is desirable to develop reactions that can efficiently convert low concentrations of CO, present in exhaust gases and ambient air, into industrially important chemicals, without involving any expensive separation, concentration, compression, and purification processes. Here, we present an efficient method for synthesizing urea derivatives from alkyl ammonium carbamates. The carbamates can be easily obtained from low concentrations of CO as present in ambient air or simulated exhaust gas. Reaction of alkyl ammonium carbamates with 1,3-dimethyl-2-imidazolidinone solvent in the presence of a titanium complex catalyst inside a sealed vessel produces urea derivatives in high yields. This reaction is suitable for synthesizing ethylene urea, an industrially important chemical, as well as various cyclic and acyclic urea derivatives. Using this methodology, we also show the synthesis of urea derivatives directly from low concentration of CO sources in a one-pot manner.
为了减少人为二氧化碳(CO)排放,开发能够将废气和环境空气中存在的低浓度CO高效转化为具有工业重要性的化学品的反应是很有必要的,且无需任何昂贵的分离、浓缩、压缩和纯化过程。在此,我们展示了一种由烷基氨基甲酸盐合成脲衍生物的有效方法。氨基甲酸盐可轻松从环境空气中或模拟废气中存在的低浓度CO获得。在密封容器中,烷基氨基甲酸盐与1,3 - 二甲基 - 2 - 咪唑啉酮溶剂在钛配合物催化剂存在下反应,可高产率地生成脲衍生物。该反应适用于合成具有工业重要性的化学品乙撑脲以及各种环状和非环状脲衍生物。使用这种方法,我们还展示了以一锅法直接从低浓度CO源合成脲衍生物。