Shih Mei-Hsiu, Xu Yu-Yuan, Yang Yu-Sheng, Lin Tzu-Ting
Department of Chemical and Materials Engineering, Southern Taiwan University of Science and Technology, Tainan City 71005, Taiwan.
Molecules. 2015 Mar 20;20(3):5184-201. doi: 10.3390/molecules20035184.
This study addressed the design and syntheses of diverse ligands, which were then successfully treated with Ni (II) ion to afford a series of nickel complexes. α-Chloroformylarylhydrazine hydrochlorides contain two different functional groups. One is a strong nucleophile, and the other is a good electrophile. Therefore, it can be designed to react with several reagents to obtain diverse derivatives which can be used as ligands for metal complexes. Furthermore, benzimidazole and salicylaldehyde can provide electron donor sites, N and O electron donors, separately. Hence, the starting materials α-chloroformylarylhydrazine hydrochlorides were first treated with 2-(aminomethyl)-benzimidazole (7) to give the corresponding semicarbazides. Then, the semicarbazides 8 reacted with various substituted salicylaldehydes to afford the desired substituted-salicylaldehyde 2-aryl-4-substituted semicarbazones, which could coordinate with nickel (II) ion to give the corresponding nickel complexes.
本研究涉及多种配体的设计与合成,然后将其成功用镍(II)离子处理,得到一系列镍配合物。α-氯甲酰基芳基肼盐酸盐含有两个不同的官能团。一个是强亲核试剂,另一个是良好的亲电试剂。因此,可以设计使其与几种试剂反应,以获得可用作金属配合物配体的多种衍生物。此外,苯并咪唑和水杨醛可分别提供电子供体位点,即氮和氧电子供体。因此,首先将起始原料α-氯甲酰基芳基肼盐酸盐与2-(氨基甲基)-苯并咪唑(7)反应,得到相应的氨基脲。然后,氨基脲8与各种取代的水杨醛反应,得到所需的取代水杨醛2-芳基-4-取代氨基脲,其可与镍(II)离子配位,得到相应的镍配合物。