Department of Chemistry, Faculty of Science and Letters, Aksaray University, 68100 Aksaray, Turkey.
Department of Biochemistry, Faculty of Science, Selçuk University, 42075 Konya, Turkey.
Int J Biol Macromol. 2020 Jul 15;155:814-822. doi: 10.1016/j.ijbiomac.2020.04.003. Epub 2020 Apr 3.
Aryl nitriles, Ar-C ≡ N, and biaryls are important precursors of many compounds commonly used in the industry. Production of aryl nitriles and biaryls through a facile method is therefore of significance. In the study the synthesis of aryl nitriles and biaryls with various substituted groups was successfully achieved using a simple but efficient palladium nanocatalyst system. The nano-catalyst system, (Pd NPs@FeO/lignin/chitosan), was easily prepared by decorating palladium nanoparticles on the magnetic lignin/chitosan microbeads without using any toxic reducing agents. Characterization of the catalyst revealed that the size of palladium nanoparticles was lower than 20 nm and the palladium nanoparticles were homogeneously dispersed on the catalyst support; FeO/lignin/chitosan. The catalytic activity of Pd NPs@FeO/lignin/chitosan was tested in the synthesis of a number of various aryl nitriles and biaryls. Pd NPs@FeO/lignin/chitosan catalyzed the conversion of different aryl halides into aryl nitriles in the presence of K[Fe(CN)] by producing conversion yields as high as 97%. The system also exhibited good reactions yields up to 98% for synthesis of biaryls. More importantly, due to its magnetic nature, the used catalyst was easily recovered from the reaction media with a magnet, and regenerated and reused for seven runs.
芳基腈、Ar-C≡N 和联芳烃是许多工业中常用化合物的重要前体。因此,通过简便的方法生产芳基腈和联芳烃具有重要意义。在这项研究中,成功地使用简单但高效的钯纳米催化剂体系合成了具有各种取代基的芳基腈和联芳烃。纳米催化剂体系(Pd NPs@FeO/木质素/壳聚糖)通过在磁性木质素/壳聚糖微珠上修饰钯纳米粒子而无需使用任何有毒还原剂来制备。催化剂的表征表明,钯纳米粒子的尺寸小于 20nm,钯纳米粒子均匀分散在催化剂载体 FeO/木质素/壳聚糖上。Pd NPs@FeO/木质素/壳聚糖的催化活性在合成多种芳基腈和联芳烃的反应中进行了测试。在 K[Fe(CN)6]的存在下,Pd NPs@FeO/木质素/壳聚糖催化不同芳基卤化物转化为芳基腈,转化率高达 97%。该体系对于联芳烃的合成也表现出良好的反应收率,高达 98%。更重要的是,由于其磁性,用过的催化剂可以很容易地用磁铁从反应介质中回收,并再生和重复使用七次。