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Related Experiment Video

Updated: Jun 5, 2026

Effect of Microwave Synthesis Conditions on the Structure of Nickel Hydroxide Nanosheets
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Effect of Microwave Synthesis Conditions on the Structure of Nickel Hydroxide Nanosheets

Published on: August 18, 2023

Layered hydroxide hybrid nanostructures: a route to multifunctionality.

Guillaume Rogez1, Carlo Massobrio, Pierre Rabu

  • 1Institut de Physique et Chimie des Matériaux de Strasbourg, UMR7504 CNRS-Université de Strasbourg, Strasbourg, France.

Chemical Society Reviews
|January 12, 2011
PubMed
Summary

This review explores recent advances in transition metal hydroxide hybrids, focusing on their synthesis, flexibility, and functional properties for advanced material applications. These hybrids serve as model systems for structure-property correlations.

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Area of Science:

  • Materials Science
  • Solid-State Chemistry
  • Supramolecular Chemistry

Background:

  • The quest for novel functional materials drives interdisciplinary research across chemistry, physics, and engineering.
  • Hybrid multifunctional materials integrate diverse principles for tailor-made applications.
  • Transition metal hydroxide hybrids represent a promising class of functional building blocks.

Purpose of the Study:

  • To critically review recent achievements in transition metal hydroxide hybrids.
  • To discuss their synthesis, flexibility, and functional properties.
  • To highlight their utility as model systems for understanding structure-property relationships.

Main Methods:

  • Literature review of recent advancements in transition metal hydroxide hybrids.

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Last Updated: Jun 5, 2026

Effect of Microwave Synthesis Conditions on the Structure of Nickel Hydroxide Nanosheets
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Effect of Microwave Synthesis Conditions on the Structure of Nickel Hydroxide Nanosheets

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Simultaneous Multi-surface Anodizations and Stair-like Reverse Biases Detachment of Anodic Aluminum Oxides in Sulfuric and Oxalic Acid Electrolyte
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Simultaneous Multi-surface Anodizations and Stair-like Reverse Biases Detachment of Anodic Aluminum Oxides in Sulfuric and Oxalic Acid Electrolyte

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  • Analysis of synthesis strategies and structural characteristics.
  • Examination of functional properties and applications.
  • Inclusion of insights from atomic scale modeling and electronic structure calculations.
  • Main Results:

    • Transition metal hydroxide hybrids offer tunable properties through molecular grafting.
    • These materials serve as excellent model systems for correlating structure with physical properties.
    • Atomic scale modeling aids in understanding electronic structure and optimizing designs.

    Conclusions:

    • Transition metal hydroxide hybrids are versatile materials with significant potential in various applications.
    • Understanding the interplay between molecular moieties and the hydroxide framework is key to designing advanced materials.
    • Interdisciplinary approaches and computational modeling are crucial for future developments in this field.