Leo Pedro, Orcajo Gisela, Briones David, Calleja Guillermo, Sánchez-Sánchez Manuel, Martínez Fernando
Department of Chemical and Energy Technology, ESCET. Rey Juan Carlos University, C/Tulipan s/n, 28933 Mostoles, Spain.
Instituto de Catálisis y Petroleoquímica, ICP-CSIC. C/Marie Curie 2, 28049 Madrid, Spain.
Nanomaterials (Basel). 2017 Jun 16;7(6):149. doi: 10.3390/nano7060149.
The activity and recyclability of Cu-MOF-74 as a catalyst was studied for the ligand-free C-O cross-coupling reaction of 4-nitrobenzaldehyde (NB) with phenol (Ph) to form 4-formyldiphenyl ether (FDE). Cu-MOF-74 is characterized by having unsaturated copper sites in a highly porous metal-organic framework. The influence of solvent, reaction temperature, NB/Ph ratio, catalyst concentration, and basic agent (type and concentration) were evaluated. High conversions were achieved at 120 °C, 5 mol % of catalyst, NB/Ph ratio of 1:2, DMF as solvent, and 1 equivalent of K₂CO₃ base. The activity of Cu-MOF-74 material was higher than other ligand-free copper catalytic systems tested in this study. This catalyst was easily separated and reused in five successive runs, achieving a remarkable performance without significant porous framework degradation. The leaching of copper species in the reaction medium was negligible. The O-arylation between NB and Ph took place only in the presence of Cu-MOF-74 material, being negligible without the solid catalyst. The catalytic advantages of using nanostructured Cu-MOF-74 catalyst were also proven.
研究了Cu-MOF-74作为催化剂用于4-硝基苯甲醛(NB)与苯酚(Ph)的无配体C-O交叉偶联反应以形成4-甲酰基二苯醚(FDE)的活性和可回收性。Cu-MOF-74的特征在于在高度多孔的金属有机框架中具有不饱和铜位点。评估了溶剂、反应温度、NB/Ph比例、催化剂浓度和碱试剂(类型和浓度)的影响。在120°C、5 mol%的催化剂、NB/Ph比例为1:2、以N,N-二甲基甲酰胺(DMF)为溶剂和1当量碳酸钾(K₂CO₃)碱的条件下实现了高转化率。Cu-MOF-74材料的活性高于本研究中测试的其他无配体铜催化体系。该催化剂易于分离并可连续五次重复使用,在无明显多孔框架降解的情况下表现出卓越性能。反应介质中铜物种的浸出可忽略不计。NB与Ph之间的O-芳基化反应仅在Cu-MOF-74材料存在下发生,无固体催化剂时可忽略不计。使用纳米结构的Cu-MOF-74催化剂的催化优势也得到了证实。