Development of Novel Guanidine Iron (III) Complexes as a Powerful Catalyst for the Synthesis of Tetrazolo[1,5-a]pyrimidine by Green Protocol

M. A. A. El Remaily, O. Elhady, T. Eskander, S. Mohamed, A. Abu‐Dief
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引用次数: 1

Abstract

: The design of the structure of a coordination compound (catalyst) is of crucial importance for its catalytic applications. This paper presents a series of newly synthesized iron (III) complexes, including (benzothiazol-guanidine-Fe), (benzothiazol-imidazol-Fe), and (benzothiazol-pyrimidin-Fe), as potential catalysts for various organic reactions. To confirm their structures, the complexes were characterized using a variety of spectroscopic methods, such as FT-IR, 1 H-NMR, 13 C-NMR, CHN elemental analysis, electronic spectra, TGA, molar conductivity, and magnetic moment. Spectroscopy and other analytical studies reveal distorted octahedral geometry in iron complexes. In order to ascertain the kinetic and thermodynamic properties of complexes, the Coats-Redfern method was used. Further research was done into these complexes’ catalytic abilities for the environmentally friendly synthesis of 7-amino-4,5-dihydro-tetrazolo[1,5-a ]pyrimidine-6-carbonitrile derivatives using aromatic aldehyde, malononitrile, and 5-aminotetrazole as reactants. The reactions were conducted in a compassionate environment using a green solvent. The outcomes demonstrated the excellent catalytic activity and selectivity of the complexes, which led to good yields of the intended products. As a result, the study offers useful information on the novel iron (III) complexes’ synthetic uses, and the creation of effective and environmentally acceptable catalysts, and emphasizes their potential as powerful catalysts for a variety of organic transformations. This strategy's simplicity, safety, commercially accessible catalyst, stability, fast reaction time, and outstanding yields may be used in the industry in the future.
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新型胍类铁(III)配合物在四唑[1,5-a]嘧啶合成中的催化作用
配位化合物(催化剂)的结构设计对其催化应用至关重要。本文介绍了一系列新合成的铁(III)配合物,包括(苯并噻唑-胍-铁)、(苯并噻唑-咪唑-铁)和(苯并噻唑-嘧啶-铁),作为各种有机反应的潜在催化剂。为了确定它们的结构,我们利用FT-IR、1h - nmr、13c - nmr、CHN元素分析、电子能谱、TGA、摩尔电导率和磁矩等多种光谱方法对配合物进行了表征。光谱学和其他分析研究揭示了铁配合物中扭曲的八面体几何结构。为了确定配合物的动力学和热力学性质,采用Coats-Redfern方法。进一步研究了这些配合物以芳香醛、丙二腈和5-氨基四氮唑为原料,催化合成7-氨基-4,5-二氢四氮唑[1,5-a]嘧啶-6-碳腈衍生物的催化能力。这些反应是在一个富有同情心的环境中使用绿色溶剂进行的。结果表明,该配合物具有良好的催化活性和选择性,从而获得了预期产物的良好收率。因此,该研究为新型铁(III)配合物的合成用途,以及有效和环境可接受的催化剂的创造提供了有用的信息,并强调了它们作为各种有机转化的强大催化剂的潜力。该方法具有简单、安全、催化剂易买、稳定性好、反应时间快、收率高等优点,未来可能会在工业上得到应用。
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