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Optical properties of Copper Doped Zinc Sulphidenanoparticles: Electro- and Photoluminescence of ZnS Nanoparticles - Softcover

 
9783659524189: Optical properties of Copper Doped Zinc Sulphidenanoparticles: Electro- and Photoluminescence of ZnS Nanoparticles

Synopsis

Nanotechnology is the application of nanoscience to useful devices. Nanoscience can be explained as the study and manufacture of structure and devices with dimension about the size of few molecules. It is the branch of science which deals with the object with at least one dimension between one to one hundred nanometer in length, a size scale of atom molecules and super molecular structure. The nanometer sized semiconductor particles are representative of a different state of matter. This new class of material explores many properties such as size quantization, surface effect, lattice contraction, unusual fluorescence and enhanced oscillator strength, which are smaller than the diameter of their corresponding bulk excitons strongly depend on the size of the particles due to quantum confinement of the excited states. For nanoparticles, the size and surface effect are both importan. By controlling the size and surface effect, it is possible to design materials of required optical, magnetic, elastic and chemical properties. The combination of polymer with semiconducting nanoparticles allows the fabrication of thin film light emitting devices.

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About the Author

Dr. Sakshi Sahare has completed her Ph.D. from Rani Durgawati University, Jabalpur, INDIA. Now she is posted as a assistant professor in Goverment College Bichhua, Chhindwara, Madhyapradesh, INDIA. Now she is working on Luminescence property of doped II-VI semeconductor materials.

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  • PublisherLAP LAMBERT Academic Publishing
  • Publication date2014
  • ISBN 10 3659524182
  • ISBN 13 9783659524189
  • BindingPaperback
  • LanguageEnglish
  • Number of pages224

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Taschenbuch. Condition: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Nanotechnology is the application of nanoscience to useful devices. Nanoscience can be explained as the study and manufacture of structure and devices with dimension about the size of few molecules. It is the branch of science which deals with the object with at least one dimension between one to one hundred nanometer in length, a size scale of atom molecules and super molecular structure. The nanometer sized semiconductor particles are representative of a different state of matter. This new class of material explores many properties such as size quantization, surface effect, lattice contraction, unusual fluorescence and enhanced oscillator strength, which are smaller than the diameter of their corresponding bulk excitons strongly depend on the size of the particles due to quantum confinement of the excited states. For nanoparticles, the size and surface effect are both importan. By controlling the size and surface effect, it is possible to design materials of required optical, magnetic, elastic and chemical properties. The combination of polymer with semiconducting nanoparticles allows the fabrication of thin film light emitting devices. 224 pp. Englisch. Seller Inventory # 9783659524189

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Published by LAP LAMBERT Academic Publishing, 2014
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Taschenbuch. Condition: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - Nanotechnology is the application of nanoscience to useful devices. Nanoscience can be explained as the study and manufacture of structure and devices with dimension about the size of few molecules. It is the branch of science which deals with the object with at least one dimension between one to one hundred nanometer in length, a size scale of atom molecules and super molecular structure. The nanometer sized semiconductor particles are representative of a different state of matter. This new class of material explores many properties such as size quantization, surface effect, lattice contraction, unusual fluorescence and enhanced oscillator strength, which are smaller than the diameter of their corresponding bulk excitons strongly depend on the size of the particles due to quantum confinement of the excited states. For nanoparticles, the size and surface effect are both importan. By controlling the size and surface effect, it is possible to design materials of required optical, magnetic, elastic and chemical properties. The combination of polymer with semiconducting nanoparticles allows the fabrication of thin film light emitting devices. Seller Inventory # 9783659524189

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Sakshi Sahare|Gaurav Silodiya|Meera Ramrakhiani
Published by LAP LAMBERT Academic Publishing, 2014
ISBN 10: 3659524182 ISBN 13: 9783659524189
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Condition: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Autor/Autorin: Sahare SakshiDr. Sakshi Sahare has completed her Ph.D. from Rani Durgawati University, Jabalpur, INDIA. Now she is posted as a assistant professor in Goverment College Bichhua, Chhindwara, Madhyapradesh, INDIA. Now she is working on . Seller Inventory # 5162351

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