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Optical properties of nanoparticles thesis


optical properties of nanoparticles thesis

acetate by ethylene glycol (EG) is reported in the present paper. In the theoretical part of our thesis, to contribute to a better understanding of particles of various shapes and configurations, the versatile Discrete Dipole Approximation (DDA) has been employed to simulate in depth the absorption spectra of single isolated oriented nanoparticles of different symmetry (nanocube. Divisions: Concordia University Faculty of Arts and Science Physics. The reduction of gold ions resulted in the formation of gold that nucleated and grew within the polymer films.

Synthesis and Optical Properties of, silver, nanoparticles Introduction to Optical Properties of Nanomaterials Studies of, optical Properties of Au Nanoparticles Synthesis and Optical Properties of ZnO Nanostructures

The results showed research statement thesis that, by using adequate post-synthesis heat treatments, gold-polymer nanocomposites could be used as plasmonic sensing platforms. The composite films having micro- and nanobubble inclusions have been found to be very stable. Publication Date: Fri Jul 31 00:00:osti Identifier: 22488671, resource Type: Journal Article, resource Relation: Journal Name: AIP Conference Proceedings; Journal Volume: 1670; Journal Issue: 1; Conference: eipt-2015: International conference on emerging interfaces of plasma science and technology, Ujjain (India 9-; Other Information: (c) 2015 AIP. It was shown that, depending on the energy source, gold nanoparticles with different shapes could be formed. Item Type: Thesis (PhD authors: Alsawafta, Mohammed, institution: Concordia University, degree Name:. The UV/Vis spectra show that an absorption peak, occurring due to surface plasmon resonance (SPR exists at 319 nm. PhD thesis, Concordia University. Citation Formats, singh, Jaiveer, Kaurav, Netram, E-mail:, Choudhary,. "Synthesis and optical properties of silver nanoparticles". It was shown that both the solution and the films on glass substrates contained entrapped hydrogen micro- and nanobubbles with diameters in the range of 200 nm3.

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