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Perfect Solvent- and Catalyst-Free Syntheses of Imine Derivatives Using the Pressure Reduction Technique
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作者 Shoko Suzuki Hiroyuki Ito +9 位作者 Shinji Ishizuka Risehiro Nonaka Motoyoshi Noike Takeshi Kodama Kenji Funaki Mizuho Taguchi Taisei Kagaya Sayaka Sato Guillaume Redler Yasuo Yokoyama 《Green and Sustainable Chemistry》 2019年第4期105-118,共14页
In the field of organic syntheses, the development of environmentally friendly methods based on the concept of green chemistry has been always required. In response to this requirement, we reported solvent- and cataly... In the field of organic syntheses, the development of environmentally friendly methods based on the concept of green chemistry has been always required. In response to this requirement, we reported solvent- and catalyst-free syntheses of imines using the pressure reduction technique as a key technology. We found that this reaction proceeded very rapidly in the initial stage, but its rate decreased with the passage of time. It was also found that the reaction of benzaldehyde with aniline had a specificity that the phase transition occurred. In this method, the desired imines could be obtained in good to excellent yields, but target compounds had to be given by purifications using organic solvents. Therefore, we tried to develop the perfect synthetic method of imine derivatives without organic or inorganic solvents. We selected two methods and took them into this investigation. One was exactly mixing (1:1, substance ratio) aldehydes and amines and the other was employing lower pressure (>0.1 mmHg, previous method: 1.0 mmHg) at the pressure reducing technique. When this improved synthetic method was performed, it was revealed that pure target imines were obtained in excellent yields without any purification. 展开更多
关键词 SOLVENT-FREE CATALYST-FREE NEAT Reaction Pressure REDUCTION TECHNIQUE IMINE
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Efficient Solvent- and Catalyst-Free Syntheses of Imine Derivatives Applying the Pressure Reduction Technique: Remarkable Change of the Reaction Rate with the Phase Transition
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作者 Shoko Suzuki Shujiro Sakaki +15 位作者 Shinji Ishizuka Tomomichi Nishino Hiroyuki Ito Risehiro Nonaka Motoyoshi Noike Takeshi Kodama Hajime Nozaka Tsuneyuki Sato Hitoshi Agematsu Koichi Maruyama Shun Oyamada Takashi Kuroishi Kazuma Sasaki Kei Yagawa Mami Yoshioka Yasuo Yokoyama 《Green and Sustainable Chemistry》 2018年第2期167-179,共13页
Because imines could be used as convenient starting materials in various fields, the development of an easy synthetic method of imine was strongly desired. In response to this demand, we thought that it would be an ef... Because imines could be used as convenient starting materials in various fields, the development of an easy synthetic method of imine was strongly desired. In response to this demand, we thought that it would be an effective synthesis method if an aldehyde and an amine could be reacted to give an imine in good yield under solvent- and catalyst-free conditions. In fact, we tried the reaction of benzaldehyde with various amines under solvent- and catalyst-free conditions followed by removal of water that was produced in the reaction system by a vacuum pump, and desired imines could be obtained in good yields. Observation of this reaction using a nuclear magnetic resonance spectrometer revealed that the reaction rate was extremely fast at the initial stage but slowed over time. However, the reaction of benzaldehyde with aniline differed greatly, and the reaction rate dramatically improved in 47 - 48 minutes after the start of the reaction. At this time, we found that the reaction system underwent a phase transition from the liquid phase to the solid phase. 展开更多
关键词 SOLVENT-FREE CATALYST-FREE Pressure REDUCTION TECHNIQUE IMINE Reaction Rate Phase TRANSITION
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