Author : Yuri Magarshak
Publisher : Springer Science & Business Media
ISBN 13 : 9048125235
Total Pages : 427 pages
Book Rating : 4.0/5 (481 download)
Book Synopsis Silicon Versus Carbon by : Yuri Magarshak
Download or read book Silicon Versus Carbon written by Yuri Magarshak and published by Springer Science & Business Media. This book was released on 2009-05-21 with total page 427 pages. Available in PDF, EPUB and Kindle. Book excerpt: Even though there is no generally accepted definition of nanotechnologies to be defined as distinct discipline there is an emerging consensus that their advent and development is a growing in importance factor of the contemporary and future technological civilization. One of these most fundamental issues we are confronted with is the compatibility with life itself. From single cell organisms to humans, carbon is a key building block of all molecular structures of life. In contrast the man created electronic industry to build on other elements, of which silicon is the most common. Both carbon and silicon create molecular chains, although different in their internal structure. All life is built from carbon-based chains. As long as the man built technological products do not directly interfere with the physiology of life the associated risks from them are relatively easy to identify. They are primarily in the environmental pollution and the possibility of upsetting the natural balance of biocoenosis, on a planetary scale. The basic life functions are still not directly subverted. We can use TV, computers, drive cars and use other technological utilities without fear of direct interference with our cellular functions. This is in particular because all these technological utilities are many orders of magnitude larger than typical scales of biological activity. Most of biological activity, from fermentative catalysis to DNA replication takes place on nanoscale. The situation is radically different when the technological goals are building nanoscale size products. All biological processes take place on nanoscale.