PREFACE
In recent years nanotechnology has become one of the most important and exciting
forefront fields in Physics, Chemistry, Engineering and Biology. It shows great
promise for providing us in the near future with many breakthroughs that will
change the direction of technological advances in a wide range of applications. To
facilitate the timely widespread utilization of this new technology it is important to
have available an overall summary and commentary on this subject which is
sufficiently detailed to provide a broad coverage and insight into the area, and at
the same time is sufficiently readable and thorough so that it can reach a wide
audience of those who have a need to know the nature and prospects for the field.
The present book hopes to achieve these two aims.
The current widespread interest in nanotechnology dates back to the years 1996
to 1998 when a panel under the auspices of the World Technology Evaluation Center
(WTEC), funded by the National Science Foundation and other federal agencies,
undertook a world-wide study of research and development in the area of nanotechnology, with the purpose of assessing its potential for technological innovation.
Nanotechnology is based on the recognition that particles less than the size of 100
nanometers (a nanometer is a billionth of a meter) impart to nanostructures built
from them new properties and behavior. This happens because particles which are
smaller than the characteristic lengths associated with particular phenomena often
display new chemistry and physics, leading to new behavior which depends on the
size. So, for example, the electronic structure, conductivity, reactivity, melting
temperature, and mechanical properties have all been observed to change when
particles become smaller than a critical size. The dependence of the behavior on the
particle sizes can allow one to engineer their properties. The WTEC study concluded
that this technology has enormous potential to contribute to significant advances
over a wide and diverse range of technological areas ranging from producing
stronger and lighter materials, to shortening the delivery time of nano structured
pharmaceuticals to the body’s circulatory system, increasing the storage capacity of
magnetic tapes, and providing faster switches for computers. Recommendations
made by this and subsequent panels have led to the appropriation of very high levels
of finding in recent years. The research area of nanotechnology is interdisciplinary,
xi
Précédent

- 10/400

Suivant