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Synthesis and Reactivity of Cyclopentadienyl Based Organometallic Compounds and Their Electrochemical and Biological Properties

机译:环戊二烯基有机金属化合物的合成,反应性及其电化学和生物学性质

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摘要

The current focus of organometallic chemistry is based upon their synthesis, eloectrochemical properties, diverse biological behavior and their facet towards a new field of bioorganometallics concerning both organometallic and coordination chemistry. Organometallic complexes involving metal - cyclopentadienyl linkages have been an important fragment due to their unique structural variety, stability and their potential applications in organic synthesis, catalysis, bioorganometallic, advance materials, molecular recognition etc. Ferrocene and its derivatives are the most versatile aspect in organometallic chemistry because of their unique structural integrity, reversible redox behavior and have been responsible for the development of material science, molecular wires, catalysis, molecular recognition, sensing, electronic communication, bio-conjugates and medicinal chemistry. The use of ferrocenyl compounds as bioactive molecule has been established recently and several reports show that a large number of ferrocene containing compounds display interesting cytotoxic and DNA cleaving activities. Ferrocene substituted tamoxifen and chloroquine derivatives are among the many examples where systematic functionalization of ferrocene has improved the cytotoxic activity of the standard drug itself. In parallel, the half sandwich based organometallic compounds are also drawing interest because their various biological properties ranging from antimalarial, antimicrobial, anticancer, enzyme inhibitors and phototoxicity. Half sandwich compounds containing metal carbonyls are the most significant ligands in medicinal chemistry and can play a vital role as tracers in immunological analysis based on several analytical methods like FTIR, electrochemical, atomic absorption techniques etc. Moreover, ferrocenyl Schiff base compounds have been reported for their interesting coordination features and exciting biological properties. In view of the enormous potential applications of ferrocenyl and half sandwich based organometallic compounds, we focused our study to synthesize some sandwich and half sandwich based Schiff base compounds and to study their biological properties. We have been able to synthesize a range of novel ferrocene and cymantrene based Schiff base compounds and characterize by spectroscopic and crystallographic technique. We have also described the synthesis of hetero-bimetallic chalcones containing both ferrocenyl and cymantrenyl fragments and studied their reactivity towards mono- and diphosphine substitution. In addition, compounds containing multiple redox centers have also been highly focused due to their various application related to electronic communication, sensors and molecular wires. In this regard, we focused on the synthesis of diferrocenyl bifunctional molecular systems containing both hydrazone and enone units using simple and systematic synthetic route. Efforts have been made to study the unique structural feature and to understand the biological and sensing properties of some of the compounds. We have carried out cyclic-voltammetric studies with different analogs of the diferrocenyl compounds to understand the electronic communication behavior inside the molecule. DFT calculation was also performed to establish some of the interesting features related to structural stability, metal ion interaction and molecular orbital energies.
机译:有机金属化学的当前重点是基于它们的合成,电化学性能,多样的生物学行为以及它们对于涉及有机金属和配位化学的生物有机金属新领域的认识。涉及金属-环戊二烯键的有机金属络合物由于其独特的结构多样性,稳定性及其在有机合成,催化,生物有机金属,高级材料,分子识别等方面的潜在应用而成为重要的片段。二茂铁及其衍生物是有机金属中用途最广泛的方面化学因其独特的结构完整性,可逆的氧化还原行为而一直负责材料科学,分子线,催化,分子识别,传感,电子通信,生物共轭物和药物化学的发展。最近已经建立了使用二茂铁基化合物作为生物活性分子的用途,并且一些报告表明,大量的含二茂铁的化合物显示出令人感兴趣的细胞毒性和DNA裂解活性。二茂铁取代的他莫昔芬和氯喹衍生物是许多实例,其中二茂铁的系统功能化改善了标准药物本身的细胞毒活性。同时,基于半三明治的有机金属化合物也引起了人们的兴趣,因为它们的各种生物学特性包括抗疟疾,抗微生物,抗癌,酶抑制剂和光毒性。含羰基金属的半夹心化合物是药物化学中最重要的配体,在基于多种分析方法(如FTIR,电化学,原子吸收技术等)的免疫学分析中,示踪剂起着至关重要的作用。此外,据报道,二茂铁基席夫碱化合物用于它们有趣的配位特征和令人兴奋的生物学特性。鉴于二茂铁基和半三明治基有机金属化合物的巨大潜在应用,我们集中研究来合成一些三明治和半三明治基席夫碱化合物并研究其生物学特性。我们已经能够合成出一系列新型的基于二茂铁和环丁烯的席夫碱化合物,并通过光谱和晶体学技术对其进行表征。我们还描述了同时含有二茂铁基和cymantrenyl片段的杂双金属查耳酮的合成,并研究了它们对单膦和二膦取代的反应性。此外,由于含多个氧化还原中心的化合物与电子通讯,传感器和分子线有关的各种应用,它们也引起了高度关注。在这方面,我们集中于使用简单和系统的合成途径合成同时含有hydr和烯酮单元的二铁茂铁双官能分子系统。已努力研究独特的结构特征并了解某些化合物的生物学和传感特性。我们已经使用二茂铁基化合物的不同类似物进行了伏安法研究,以了解分子内部的电子通信行为。还进行了DFT计算,以建立一些与结构稳定性,金属离子相互作用和分子轨道能有关的有趣特征。

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    Mishra Sasmita;

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  • 年度 2017
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