新型二氮和三氮亚甲基化学传感器的设计、合成和结构检测

Abdel-Rahman Lh, Abu-Dief Am, Abdellatif Aah
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引用次数: 4

摘要

近年来,利用化学传感器或比色法合成和设计对金属具有特殊敏感性和选择性的无危险、环保的亚胺类化合物,是目前研究的热点。许多天然传感器已被用于探测水介质中的金属离子,包括Mn(II)[1]、Fe(II)[2]、Co(II)[3]、Ni(II)[4]、Cu(II)[5]、Zn(II)[6]、Mn(II)[7]、VO(II)[8]和Pd(II)[9]。亚胺类化合物具有亚甲基(- c =N-),由于其众所周知的配位功能,是现代配位化学中使用的许多最重要的配体[10-18]。这些亚胺及其金属亚胺螯合物在电化学[19]、催化[20,21]、金属离子的固相萃取和分离路线[22]以及几种聚合[23]等特殊领域有着广泛的应用。它们还被发现具有多种多样的有机活性,包括抗菌[24]、抗真菌[25]、抗疟疾[26]、抗增殖[27]、抗炎[28]、抗病毒[29]、抗肿瘤[30,31]和抗氧化[32]。此外,它们还可能成为必不可少的内部腐蚀抑制剂[33]、极具选择性的聚合物膜电极[34]、光学传感器[35]和生物探针[36]。不同的亚胺是通过基胺与活泼的羰基醛的缩合反应以1:1 M的比例组织的。在这项工作中,旨在获得新的比色化学传感器,用于特别识别水介质中的Cr(III), Fe(II), Co(II), Ni(II), Cu(II), Zn(II), Mn(II), VO(II)和Pd(II)颗粒。因此,含硝基的NBA亚胺分别由3-硝基苯甲醛与2-氨基苯甲酸以1:1的比例简单一锅缩合而得,而含硝基的DAPH三亚胺则分别由2,6 -二乙酰吡啶与苯基氯肼缩合而得。因此,合成了一种对金属离子具有较强结合力的新型亚胺作为化学传感器。深红出版社的研究之翼研究文章
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design, Synthesis and Structural Inspection of Some Novel Di- And Tri-Azomethene Compounds as Chemo Sensors for the Detection of Various Metal Ions
Synthesis and designing of recent imine compounds with chemo-sensor or colorimetric, that is non-dangerous, eco-friendly and particularly sensitive and selective toward metals, are presently of splendid interest. Many natural sensors had been advanced to find out metallic ions which includes Mn(II)‏ [1], Fe(II)‏ [2], Co(II)‏ [3], Ni(II)‏ [4], Cu(II)‏ [5], Zn(II)‏ [6], Mn(II)‏ [7], VO(II) ‏[8], and Pd(II)‏ [9] in aqueous media. Imine compounds which having an azomethine group (-C=N-), are many of the maximum essential ligands utilized in modernday coordination chemistry because of their well-known coordinative functionality [10-18]. Those imines and their metal imine chelates have extensive utility in exceptional regions of electrochemistry [19], catalysis [20,21], solid phase extraction of metallic ions and separation routs [22], and several kinds of polymerization [23]. They’re additionally discovered to showcase a huge variety of organic activities, which have been containing antibacterial [24], antifungal [25], antimalarial [26], antiproliferative [27], anti-inflammatory [28], antiviral [29], antitumor [30,31] and antioxidant [32]. Furthermore, they may be turning into essential inside the corrosion inhibitors [33], extremely selective polymer membrane electrodes [34], optical sensors [35], and biological probes [36]. Different imines are organized by way of the condensation reaction of prime amines with vivacious carbonyl gatherings of aldehydes in one: one M proportion. on this work, it’s been intended to procure new colorimetric chemosensors for particular recognition of Cr(III)‏, Fe(II)‏, Co(II)‏, Ni(II)‏, Cu(II)‏, Zn(II)‏, Mn(II), VO(II) and Pd(II)‏ particles in aqueous media. Therefore, NBA imine containing nitro group, became prepared via an easy one-pot condensation of 3-nitro-benzaldyhide with 2-amino benzoic acid in 1:1 ratio, respectively while DAPH tri-iminewas synthesized by condensation of 2,6 -diacetyl-pyridine with phenyl-hydrazinium chloride, respectively. So, a new novel imine, that have greater binding nature toward metallic ions, had been synthesized as chemo-sensors. Crimson Publishers Wings to the Research Research Article
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