Lanthanide and Transition Metal Complexes of Novel Schiff Base Ligands

Lanthanide and Transition Metal Complexes of Novel Schiff Base Ligands PDF Author: Khalil Khalaf Abid
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ISBN:
Category :
Languages : en
Pages :

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Lanthanide and Transition Metal Complexes of Novel Schiff Base Ligands

Lanthanide and Transition Metal Complexes of Novel Schiff Base Ligands PDF Author: Khalil Khalaf Abid
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Structural and Biological Applications of Schiff Base Metal Complexes

Structural and Biological Applications of Schiff Base Metal Complexes PDF Author: Pallavi Jain
Publisher: CRC Press
ISBN: 1000865460
Category : Science
Languages : en
Pages : 360

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Coordination compounds have been well-known for their wide variety of applications for over a century, as well as enhancing the researcher’s interest and concern in evaluating their action mechanism. It is certainly one of the most intensely discussed research topics. Coordination compounds involve different metal-ion-ligand phenomenon. The involved metal ions play a significant role in structural association and functioning of several processes in the genetic and metabolism system. In recent years, Schiff base ligands have gained significant interest and received a keen interest of many researchers. Schiff’s base ligands have been recognized to hold a wide variety of biological and medicinal activities due to the presence of donor atoms. They have proved exceptional pharmalogical actions such as antimicrobial, anti-tuberclosis, antiplatelet, antidiabetic, antiarthritis, antioxidant, anti-inflammatory, anticancer, antiviral, antimalarial, and analgesic. These biologically active Schiff base ligands have also been shown to inhibit enzyme mobilization and, when bound to a metal ion, exhibit enhanced biological activity, making them useful in a number of fields. As a result, metal complexes of Schiff base ligands are gaining popularity due to their unique properties and functionalities. Schiff base complex-based research for educational and industrial purposes is booming, and the number of publications is gradually increasing. Despite these interests, there is currently no detailed book on Schiff base metal complexes that covers the structures, biological activities, and other non-biological perspectives. This book delves into the structures of Schiff base metal complexes, which are critical in assessing the biological viability of any complex. It also highlights their biological significance in pharma and drug discovery like antibacterial, antifungal, anticancer, anti-inflammatory, anti-arthritis, anti-diabetic, antioxidants, anti-proliferative, antitumor, anticancer, antiviral. The fundamentals of metal complexes are described, as well as an up-to-date outline of developments in synthesis, characterization methods, properties- chemical, thermal, optical, structural, and applications. This book also discusses the other applications of Schiff base metal complexes: as sensor (luminescent, electrochemical, and biosensor), as pigments in dying and paint industries, as photocatalyst to improve the degradation rate. Features : This book would be useful for academia, researchers and engineers working in the area of Schiff base and their metal complexes. This book will give an in-depth account of the properties of Schiff base and their metal complexes. This book will discuss the details of synthesis methods for Schiff base and their metal complexes. This book will cover emerging trends in the use of Schiff base metal complexes in the industry. This book will provide an overview of the wider biological applications of Schiff base metal complexes

Transition Metal Complexes of Schiff Base Ligands Derived from Polyketones

Transition Metal Complexes of Schiff Base Ligands Derived from Polyketones PDF Author: John Richard Tate
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Novelties in Schiff Bases

Novelties in Schiff Bases PDF Author: Takashiro Akitsu
Publisher: BoD – Books on Demand
ISBN: 0850140722
Category : Science
Languages : en
Pages : 162

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Schiff bases, originally introduced by German chemist Hugo Schiff in 1864, are well-known imine or azomethine (RR’C=NR”) moieties prepared from aldehydes and primary amines through condensation. Since then, Schiff bases have been recognized not only as compounds but also as useful ligands for metal complexes in inorganic coordination chemistry. This is because Schiff bases are essentially Lewis bases having lone pairs on the nitrogen (N) atom (M:N=CHR). In both organic and coordination chemistry, as well as related fields of science, the functions of Schiff base complexes and materials are of great interest. This book introduces and discusses novel aspects of Schiff base compounds.

Vanillin- Aminoquinoline Schiff Bases and their Co(II), Ni(II) and Cu(II) Complexes

Vanillin- Aminoquinoline Schiff Bases and their Co(II), Ni(II) and Cu(II) Complexes PDF Author: Dr. S. N. Battin
Publisher: Lulu.com
ISBN: 0359913911
Category :
Languages : en
Pages : 282

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STUDIES OF SOME TRANSITION METAL COMPLEXES OF SCHIFFÕS BASES

STUDIES OF SOME TRANSITION METAL COMPLEXES OF SCHIFFÕS BASES PDF Author: VISHWAS GANPATRAO MANE
Publisher: Lulu.com
ISBN: 0359546269
Category : Education
Languages : en
Pages : 234

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In recent days large area of inorganic chemistry research is acquired by coordination chemistry due to its interesting and significant properties. Coordination chemistry has always been challenge. Earlier there were mysteries about structure and bonding. The rapid developing field of bio-inorganic chemistry is centered on the study of coordination compounds present in living organisms. Many biologically active compounds are coordination complexes. The similar types of synthesized complexes have served as model of such biologically active compounds. The bio-inorganic chemistry is largely concerned with coordination chemistry.

Schiff Base Metal Complexes

Schiff Base Metal Complexes PDF Author: Pranjit Barman
Publisher: John Wiley & Sons
ISBN: 3527839461
Category : Science
Languages : en
Pages : 229

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Schiff Base Metal Complexes Schiff bases are compounds created from a condensed amino compounds, which frequently form complexes with metal ions. They have diverse applications in biology, catalysis, material science and industry. Understanding these compounds, their properties, and the available methods for synthesizing them is a key to unlocking industrial innovation. Schiff Base Metal Complexes provides a comprehensive overview of these compounds. It introduces the compounds and their properties before discussing their various synthesizing methods. A survey of existing and potential applications gives a complete picture and makes this a crucial guide for researchers and industry professionals looking to work with Schiff base complexes. Schiff Base Metal Complexes readers will also find: A systematic and organized structure designed to make information instantly accessible Detailed coverage of thermal synthesis, photochemical synthesis, and more Challenges with different methods described in order to help readers make the correct choice for their own work Schiff Base Metal Complexes is a useful reference for organic chemists, materials scientists, and researchers or industry professionals working with organometallics.

Synthesis and Characterization of Transition Metal Complexes with Schiff Base Ligands

Synthesis and Characterization of Transition Metal Complexes with Schiff Base Ligands PDF Author:
Publisher:
ISBN:
Category : Schiff bases
Languages : en
Pages : 45

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Synthesis and Characterization of New Schiff Bases Ligands with Their Transition and Actinide Metals

Synthesis and Characterization of New Schiff Bases Ligands with Their Transition and Actinide Metals PDF Author: Sali Nabeel Hanna Jabrou
Publisher:
ISBN:
Category : Actinide elements
Languages : en
Pages : 191

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Over recent years a great deal of interest has developed in new transition metal complexes of Schiff base ligand. The preparation of new ligand is the most important step in the development of metal complexes that exhibit unique properties and novel reactivity. The electron donor and electron acceptor properties of the ligand, the structural function groups and the position of the ligand in the coordination sphere, together with the reactivity of coordination compounds may be the factor for different studies. The synthesis and structural investigations of Schiff bases and their metal complexes are a considerable center of attention because of their potentially beneficial pharmacological properties and a wide variation in their mode of bonding. Metal coordination complexes have a wide variety of technological and industrial application, ranging from catalysis to anticancer drugs. In these compounds the metal atom itself may have a number of roles, based on its coordination geometry, oxidation state, and magnetic electronic and photochemical behaviors. This study presents the synthesis, characterization, and structural studies of different series of Copper and Uranium complexes of salicylaldehyde Schiff base derivatives with various organic amine compounds. The Schiff bases act as neutral and bidentate ligands, which can attach the metal through the azomethine nitrogen and furfural oxygens. These Schiff bases are prepared by iii reacting salicylaldehyde with various organic amines. In the case of most complexation reactions, highly colored precipitates were formed immediately. The complexes were found to have composition ML2 and M2L2, where M is the metal and L the organic ligand. This implies "mononuclear" structures with one metal + 2 ligands, and "binuclear" where the ligands hold two metal atoms in close proximity. The interesting molecular and crystal structural features of the Schiff base ligand called E-2-((benzo[d]thiazol-2-ylimino)methyl)phenol and its Cu(II) complex are presented in Chapter 2. Further investigations on the coordination chemistry of the Schiff base ligands are made by reacting these ligands with copper and uranium, described in Chapter 3. Another series of dicopper(II) complexes and diuranium complex of the Schiff base ligands, containing azomethine nitrogen and furfural oxygen donor group are investigated to evaluate the role of alkoxo bridge on the structures. Making the compounds with two uranium atoms leads to very high molecular weight, as a path to the highest molecular weight liquid crystal. This lays the pathway to future work for making those crystals. These dinuclear complexes are presented in chapter 4. The objective of the present study is to investigate the coordination chemistry of these ligands with Copper and Uranium. For the ligands this was done by a combination of nuclear magnetic resonance spectroscopy, infrared spectroscopy, ultraviolet-visible spectroscopy and single X-ray crystallography. The metal complexes were analyzed by the same techniques, except that in the case of uranium, all efforts to obtain single crystal for X-ray crystallography proved unsuccessful, so the molecular structure had to be ascertained from the other techniques.

Synthesis and Characterization of 3d Transition Metal Complexes with Schiff Base Ligands

Synthesis and Characterization of 3d Transition Metal Complexes with Schiff Base Ligands PDF Author:
Publisher:
ISBN:
Category : Chemistry, Organic
Languages : en
Pages : 37

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