Metallic nanophases - Definitions, processing and properties

Add to my library

N3808 V1 Article

Metallic nanophases - Definitions, processing and properties

Author : Yannick CHAMPION

Publication date: July 10, 2026 | Lire en français

Add to my library Add to my library

Logo Techniques de l'Ingenieur You do not have access to this resource.
Request your free trial access! Free trial

Already subscribed?

Overview

ABSTRACT

Metal nanophases are found in a wide range of applications, where they are used for their properties or to enable product miniaturization. This article aims to understand the reason for the change in properties of metallic nanophases by establishing a clear definition of this type of phase. The dimensions of microstructures, which become nanostructures, are compared to the length scales of properties. The approach is illustrated for mechanical, optical, magnetic, and chemical properties.

Read this article from a comprehensive knowledge base, updated and supplemented with articles reviewed by scientific committees.

Read the article

AUTHOR

  • Yannick CHAMPION : CNRS Research Director - SIMaP Laboratory, CNRS Grenoble, France

 INTRODUCTION

Metal nanophases are found in applications as diverse as electrical engineering, electronics, digital and information technology, chemistry, and healthcare. Their use is either intentional—to exploit the specific properties of the nanoscale—or unintended, as a result of the ever-increasing trend toward product miniaturization. The objective of this article is to demonstrate and explain why new properties emerge when a material becomes what is known as a nanomaterial. We will focus on metals and metal alloys in the solid state, but the approach can be generalized to all types of phases. To illustrate this point, reference is sometimes made to ceramics and polymers, as well as to the liquid state. One might think that this is simply a matter of changing the nature of the chemical bond. However, this has significant implications: for example, metals are ductile, while ceramics are brittle. The advantage of limiting our discussion to metals is that most of their properties can be addressed from the perspective of classical physics, as opposed to quantum physics.

Underlying the main objective, the aim here is for the reader to gain a clear understanding of what nanophases and nanomaterials are, to provide a clear definition of them, and thus to acquire a method for identifying the transition from the standard state of matter to the nano state. Before addressing this aspect, it is reasonable to ask whether there is any value in discovering new materials, which include most nanomaterials. The article will only be relevant if it is convincing on this point.

It should also be noted that another way to approach nanophases –—other than the search for new properties– —is simply to experience them firsthand. We all know that technologies are trending toward ever-greater miniaturization. The components of our computers, our phones, and even the windshield wiper motors in our vehicles (!) are becoming increasingly smaller. The transition to the nanophase sometimes results in new behaviors. Ashby demonstrated in the 1970s why a ductile metallic object becomes brittle at very small dimensions. In 1949, Taylor observed that window glass, when reduced to very small...

You do not have access to this resource.
Logo Techniques de l'Ingenieur

Exclusive to subscribers. 97% yet to be discovered!

You do not have access to this resource. Click here to request your free trial access!

Already subscribed?


KEYWORDS

nano   |   metallic   |   length scale

Ongoing reading
Metallic nanophases - Definitions, processing and properties

Article included in this offer

"Functional materials - Bio-based materials"

( 208 articles )

Complete knowledge base

Updated and enriched with articles validated by our scientific committees

Services

A set of exclusive tools to complement the resources

View offer details

Dans les ressources documentaires

Alliages métalliques amorphes

La matière à l’état amorphe est connue depuis longtemps puisque cet état structural est celui des verres ...

Propriétés de l’aluminium et des alliages d’aluminium corroyés

Sont essentiellement décrites dans cette partie les propriétés spécifiques ainsi que les principales appl...

Propriétés du cuivre et de ses alliages

La panoplie des alliages cuivreux est extrêmement riche par la variété et la combinaison des additions em...

Propriétés des alliages - Étain et alliages d’étain

L’étain ( stannum  ; symbole : Sn) est un métal déjà connu dans l’Antiquité, sous la forme d’un alliage a...

Tous les livres blancs
Toutes les actualités
Contact us