Overview
ABSTRACT
By correctly dispersing nano-objects into different matrixes, composite materials are obtained whose properties offer new opportunities. However, it is absolutely necessary to characterize the nano-objects beforehand and to control their quality to guarantee the reproducibility of the targeted properties. The size, morphology, composition and specific surface area are examples of inescapable properties of nano-objects which will be discussed in this article. Monitoring work environment will also be addressed.
Read this article from a comprehensive knowledge base, updated and supplemented with articles reviewed by scientific committees.
Read the articleAUTHORS
-
Stéphanie GEORGE: Civil chemical engineer, graduate of the University of Liège (ULg) - Project Engineer at Sirris
-
Nicolas LAMPROYE: Civil chemical engineer, graduate of the University of Liège (ULg) - Project Engineer at Sirris
INTRODUCTION
For several years now, scientific and industrial circles have been showing a growing interest in nanotechnologies in fields as varied as medicine, chemistry and materials science. This interest is justified by the novel and sometimes surprising properties of nano-objects. Indeed, elementary properties that we consider to be constants, such as melting temperature or the kinetic constants of chemical reactions, are modified when the material is in nanometric form. It is quite obvious that these seemingly cryptic deviations from established theories are due to the particular characteristics of nano-objects. Determining these characteristics is therefore of vital importance for applications, as well as for the development of markets and technologies. The vast majority of techniques currently used to characterize nano-objects were not originally developed for this purpose. It is therefore important to understand the limitations and advantages of these techniques in the context of nanotechnology. As we shall see in this article, it is important to choose the methods that can be used according to the situation encountered and the information sought. This reasoning also applies to nanocomposites (materials including nano-objects), whose characterization highlights their enhanced properties. The enormous potential they represent can thus be exploited.
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? Log in!
The Ultimate Scientific and Technical Reference
KEYWORDS
nanoparticles | physico-chemical characterization | nano-objects | electron microscopy
CAN BE ALSO FOUND IN:
This article is included in
Nanosciences and nanotechnologies
This offer includes:
Knowledge Base
Updated and enriched with articles validated by our scientific committees
Services
A set of exclusive tools to complement the resources
Practical Path
Operational and didactic, to guarantee the acquisition of transversal skills
Doc & Quiz
Interactive articles with quizzes, for constructive reading
Nano-object characterization
Bibliography
Standards and norms
- Air quality – particle size fraction definitions for health-related sampling - ISO 7708 1995 - 1995
- Nanotechnologies – Terminology and definitions for nano-objects – Nanoparticle, nanofibre and nanoplate - ISO/TS 27687:2008 - 2008
- Nanotechnologies — Occupational risk management applied to engineered nanomaterials - ISO/TS 12901:2012 - 2012
Directory
Manufacturers – Suppliers – Distributors (non-exhaustive list)
Manufacturer of devices for measuring nanoparticles in the atmosphere
Grimm aerosol technik GmbH KG http://www.grimm-aerosol.com/
...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? Log in!
The Ultimate Scientific and Technical Reference