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首页> 外文期刊>Journal of nanoscience and nanotechnology >Direct Synthesis of Diphenyl Carbonate from Phenol and Carbon Dioxide Over Ti-Salen-Based Catalysts
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Direct Synthesis of Diphenyl Carbonate from Phenol and Carbon Dioxide Over Ti-Salen-Based Catalysts

机译:Ti-Salen催化剂上由苯酚和二氧化碳直接合成碳酸二苯酯

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摘要

Various metal-salen catalysts were prepared for use in the direct synthesis of diphenyl carbonate (DPC) from phenol and carbon dioxide. We found that metal-salen complexes containing titanium as central metal species retained suitable Lewis acid property for the reaction. It was revealed that the catalytic activity of Ti-salen complexes could be controlled by introducing appropriate substituents into salen ligand. Insertion of phosphonium salts into para-position of aromatic aldehyde of salen ligand enhanced solubility of the catalyst in the methanol-phenol solution, and tert-butyl substituent in the salen ligand induced selective formation of DPC due to steric effect. In addition, introduction of various bridging groups into salen ligand caused change in electronic property of central metal atom. Among the catalysts tested, Ti-(t-butyl)salphen(PPh3)CI showed the best catalytic performance at 100 degrees C and 60 bar. The catalytic system utilizing Ti-(t-butyl)salphen(PPh3)CI catalyst was then optimized by conducting the reaction at various reaction temperatures and pressures.
机译:制备了多种金属沙仑催化剂,用于由苯酚和二氧化碳直接合成碳酸二苯酯(DPC)。我们发现,以钛为中心金属物种的金属salen配合物保留了适合该反应的路易斯酸性质。揭示了可以通过将适当的取代基引入sallen配体来控制Ti-salen配合物的催化活性。将sale盐插入sallen配体的芳族醛的对位会增强催化剂在甲醇-苯酚溶液中的溶解度,并且由于空间效应,salen配体中的叔丁基取代基会选择性地形成DPC。另外,将各种桥连基团引入sallen配体中引起中心金属原子的电子性质的变化。在测试的催化剂中,Ti-(叔丁基)三苯酚(PPh3)Cl在100摄氏度和60巴下显示出最佳的催化性能。然后通过在各种反应温度和压力下进行反应来优化利用Ti-(叔丁基)三苯酚(PPh3)Cl催化剂的催化体系。

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