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c2_03_lesson
c2_03_lesson

Crystal Defects – Enhancing Silicon Semiconductor Properties by
Crystal Defects – Enhancing Silicon Semiconductor Properties by

innovative materials and smart technologies for
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... 930, 1030 and 1129 were synthesized according to literature. Experimental and spectroscopic details for all other non-commercially available compounds are reported in the experimental section and their 1H NMR spectras can be found below. Preparative HPLC was performed on various Waters systems using ...
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... attracted equally in all direction by its neighbors, and there is therefore no resultant force tending to move it in any direction. On the other hand, at the surface of a liquid there is a net attraction of the vapor molecules into the liquid. ...
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The Institute of Physical Chemistry of the Polish Academy of Sciencies

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... anisotropy field, Ha (illustrated in figure 4), which is the field required to rotate all the moments by 90° as one unit in a saturated single crystal. The anisotropy is caused by a coupling of the electron orbitals to the lattice, and in the easy direction of magnetisation this coupling is such tha ...
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< 1 ... 44 45 46 47 48 49 50 51 52 ... 64 >

Nanochemistry

Nanochemistry or Nanotechnology are related with the production and the reactions of nanoparticles, nanostructures and their compounds. It is concerned with the unique properties associated with assemblies of atoms or molecules on a scale between that of the individual building blocks and the bulk material (from 1 to 1000 nm). At this level, quantum effects can be significant, and also new ways of carrying out chemical reactions become possible.This science use methodologies from the synthetic chemistry and the materials chemistry to obtain nanomaterials with specific sizes, shapes, surface properties, defects, self-assembly properties, designed to accomplish specific functions and uses. Nanomaterials can be created from virtually any material, such as metals, semiconductors and polymers, both in their amorphous and crystalline forms.Nanochemical methods can be used to create carbon nanomaterials such as carbon nanotubes (CNT), graphene and fullerenes which have gained attention in recent years due to their remarkable mechanical and electrical properties.
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