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Complexation Equilibria: Factors Influencing Stability of Complexes01:09

Complexation Equilibria: Factors Influencing Stability of Complexes

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In complexation reactions, metal cations are the electron pair acceptors, and the ligands are the electron pair donors. The stability of the metal complexes depends primarily on the complexing ability of the central metal ion and the nature of the ligands. Generally, the complexing ability of the metal ion depends on the size and charge of the ion. As the metal ion size increases, the stability of the metal complexes decreases, provided that the valency of the metal ion and the ligands remain...
734
Metal-Ligand Bonds02:51

Metal-Ligand Bonds

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The hemoglobin in the blood, the chlorophyll in green plants, vitamin B-12, and the catalyst used in the manufacture of polyethylene all contain coordination compounds. Ions of the metals, especially the transition metals, are likely to form complexes.
In these complexes, transition metals form coordinate covalent bonds, a kind of Lewis acid-base interaction in which both of the electrons in the bond are contributed by a donor (Lewis base) to an electron acceptor (Lewis acid). The Lewis acid in...
23.6K
Extraction: Advanced Methods00:56

Extraction: Advanced Methods

1.0K
Metal ions can be separated from one another by complexation with organic ligands–the chelating agent– to form uncharged chelates. Here, the chelating agent must contain hydrophobic groups and behave as a weak acid, losing a proton to bind with the metal. Since most organic ligands used in this process are insoluble or undergo oxidation in the aqueous phase, the chelating agent is initially added to the organic phase and extracted into the aqueous phase. The metal-ligand complex is...
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Formation of Complex Ions03:45

Formation of Complex Ions

25.5K
A type of Lewis acid-base chemistry involves the formation of a complex ion (or a coordination complex) comprising a central atom, typically a transition metal cation, surrounded by ions or molecules called ligands. These ligands can be neutral molecules like H2O or NH3, or ions such as CN− or OH−. Often, the ligands act as Lewis bases, donating a pair of electrons to the central atom. These types of Lewis acid-base reactions are examples of a broad subdiscipline called coordination...
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EDTA: Chemistry and Properties01:22

EDTA: Chemistry and Properties

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Polydentate ligands are most widely used in complexometric titrations because they form more stable complexes with the metal ions than mono- or bidentate ligands due to the chelate effect. Examples of polydentate ligands are ethylenediaminetetraacetic acid (EDTA), crown ethers, and cryptands. The most important feature of optimal polydentate ligands is the ability to form 1:1 complexes in a single-step process. Amino carboxylic acid derivatives are frequently used as complexing agents. EDTA is...
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Complexation Equilibria: The Chelate Effect01:19

Complexation Equilibria: The Chelate Effect

1.1K
In complexation reactions, metal atoms or cations interact with ligands to form donor-acceptor adducts called metal complexes. Ligands that bind through one donor site are monodentate, ligands with two donor sites are bidentate, and those with more than two donor sites are polydentate ligands. For example, ethylene diamine is a bidentate ligand that binds through two nitrogen donor atoms, forming a five-membered ring. EDTA is a polydentate ligand that binds through four oxygen and two nitrogen...
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Video Experimental Relacionado

Updated: Jan 1, 2026

Preparation of Polyoxometalate-based Photo-responsive Membranes for the Photo-activation of Manganese Oxide Catalysts
05:47

Preparation of Polyoxometalate-based Photo-responsive Membranes for the Photo-activation of Manganese Oxide Catalysts

Published on: August 7, 2018

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Síntesis racional de metales cationados hacia metales redox y alcalinos estables

Tianyu Zhu, Ye Sha, Horie Adabi Firouzjaie

    Journal of the American Chemical Society
    |December 18, 2019
    PubMed
    Resumen

    Los investigadores han diseñado nuevos cobaltocenos para polielectrolitos funcionales avanzados. Estos cationes estables permiten membranas de intercambio aniónico de alto rendimiento para pilas de combustible alcalinas, que son prometedoras en condiciones adversas.

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    Área de la Ciencia:

    • Ciencias de los materiales
    • La electroquímica
    • Química de los polímeros

    Sus antecedentes:

    • Los polielectrolitos funcionales son críticos para diversas aplicaciones, impulsando la demanda de nuevos cationes con propiedades mejoradas.
    • El desarrollo de nuevos cationes es esencial para el avance de la tecnología de polielectrolitos.

    Objetivo del estudio:

    • Diseñar de forma computacional y experimental nuevos metallocationes de cobaltoceno con características electrónicas y redox únicas.
    • Para sintetizar y caracterizar una serie de derivados de cationes de cobaltoceno.
    • Para integrar estos cationes en metal-polielectrolitos para membranas de intercambio aniónico en pilas de combustible alcalinas de estado sólido.

    Principales métodos:

    • Diseño computacional y evaluación de las estructuras de cobaltoceno.
    • Síntesis experimental y caracterización de los derivados catiónicos.
    • Fabricación y ensayo de membranas intercambiadoras de aniones que incorporan los metallocationes sintetizados.
    • Evaluación del rendimiento de los dispositivos de pila de combustible en condiciones alcalinas y oxidativas.

    Principales resultados:

    • Diseño y síntesis exitosas de un nuevo conjunto de cobaltoceno metalocations.
    • Identificación de derivados catiónicos muy estables.
    • Construcción de metal-polielectrolitos utilizando estos cationes estables.
    • Demostración del rendimiento competitivo del dispositivo en pilas de combustible alcalinas de estado sólido, incluso en entornos hostiles.

    Conclusiones:

    • Los metallocationes de cobaltoceno ofrecen propiedades electrónicas y redox distintas adecuadas para polielectrolitos funcionales avanzados.
    • Los polielectrolitos metálicos desarrollados exhiben un rendimiento robusto como membranas de intercambio de aniones en pilas de combustible alcalinas de estado sólido.
    • Estos hallazgos presentan una alternativa prometedora a los organo-polielectrolitos tradicionales para aplicaciones electroquímicas exigentes.