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(01-30-2009, 06:57 PM)seminar projects crazy Wrote: [ -> ]Nanotechnology, as a whole is still an emerging area with the need to make progress in both scientific and technological terms before enormous commercialization of products may occur. Nanotechnology is the science of manipulating and characterizing matter at the atomic and molecular level (at the sub 100 nm level). It is one of the most exciting fields of science, involving a multitude of science and engineering disciplines, with widespread applications in electronics, chemical industry advanced materials, medicine, IT. Greek prefix nano (dwarf) refers to dimensions which are one hundredth smaller than current components in micrometer range. Figuratively a nano element compares to a football like to football to the size of earth. Nanotechnology is the ability to synthesis, manipulate and characterize matter at the sub 100 nm level. The applications of Nanotechnology are tremendous. This seminar highlights the commercial applications of Nanotechnology in the chemical Industry, includes production of new catalyst, coatings, filtration technologies and other end products as well as the materials upon which these products are based such as dendrimers.
Nanotechnology, as a whole is still an emerging area with the need to make progress in both scientific and technological terms before enormous commercialization of products may occur. Nanotechnology is the science of manipulating and characterizing matter at the atomic and molecular level (at the sub 100 nm level). It is one of the most exciting fields of science, involving a multitude of science and engineering disciplines, with widespread applications in electronics, chemical industry advanced materials, medicine, IT. Greek prefix nano (dwarf) refers to dimensions which are one hundredth smaller than current components in micrometer range. Figuratively a nano element compares to a football like to football to the size of earth. Nanotechnology is the ability to synthesis, manipulate and characterize matter at the sub 100 nm level. The applications of Nanotechnology are tremendous. This seminar highlights the commercial applications of Nanotechnology in the chemical Industry, includes production of new catalyst, coatings, filtration technologies and other end products as well as the materials upon which these products are based such as dendrimers.
by microstructure control methodologies new product new functionalities can obtain . It is a well-known fact that in addition to its molecular structure, the microstructure of a material is a key to determining its properties. Controlling structures at the micro- and nano-levels is therefore essential to new discoveries. for the controlled manipulation of nanomaterials with at least one dimension less than 100nm is using. Nanotechnology is emerging one of the principal areas of investigation that is integrating chemistry and materials science
[attachment=6871]
FORMATION OF GRAPHENE FOR NEXT GENERATION NANO
TECHNOLOGIES


REDDEPPA THANNEERU
USN&EH GROUP, SCHOOL OF ELECTRICAL
ENGINEERING
UNIVERSITY OF ULSAN
S. KOREA


What is Graphene?

Many definitions for Graphene.
Graphene is the basic building
block of all graphitic materials.
Graphene is a 2D, hexagonal
structured, one atom thick layer
of carbon.
Graphene is a semimetal with
zero band gap.
Graphene is the strongest
material available on the earth
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Read this page link shttp://pubs.acscen/nanotechnology/7842/7842nanotechnology.html http://en.wikipediawiki/Nanotechnology http://che
processing_and_handling/nanotechnology/
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