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Nanostructured metal oxides and devi...
~
Jayaraj, M. K.
Nanostructured metal oxides and devicesoptical and electrical properties /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Nanostructured metal oxides and devicesedited by M. K. Jayaraj.
其他題名:
optical and electrical properties /
其他作者:
Jayaraj, M. K.
出版者:
Singapore :Springer Singapore :2020.
面頁冊數:
xxxiv, 318 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
標題:
Nanostructured materials.
電子資源:
https://doi.org/10.1007/978-981-15-3314-3
ISBN:
9789811533143$q(electronic bk.)
Nanostructured metal oxides and devicesoptical and electrical properties /
Nanostructured metal oxides and devices
optical and electrical properties /[electronic resource] :edited by M. K. Jayaraj. - Singapore :Springer Singapore :2020. - xxxiv, 318 p. :ill., digital ;24 cm. - Materials horizons: from nature to nanomaterials,2524-5384. - Materials horizons: from nature to nanomaterials..
Oxide Luminescent Materials -- Upconversion Phosphors -- Optical Properties of Metal, Semiconductor and Ceramic Nanostucture Grown By liquid Phase Pulsed Laser Ablation -- Optical Properties of Quantum Well Structure -- Metal Oxides Based SERs Substrates -- ZnO One Dimensional Nanostructures and Devices -- Metal Oxide Gas Sensors -- ZnO Based Dilute Magnetic Semiconductors -- Domain Matched Epit Axial Growth of Dielectric Thin Films.
This book primarily covers the fundamental science, synthesis, characterization, optoelectronic properties, and applications of metal oxide nanomaterials. It discusses the basic aspects of synthetic procedures and fabrication technologies, explains the related experimental techniques and also elaborates on the current status of nanostructured oxide materials and related devices. Two major aspects of metal oxide nanostructures - their optical and electrical properties - are described in detail. The first five chapters focus on the optical characteristics of semiconducting materials, especially metal oxides at the nanoscale. The following five chapters discuss the electrical properties observed in metal oxide-based semiconductors and the status quo of device-level developments in a variety of applications such as sensors, transistors, dilute magnetic semiconductors, and dielectric materials. The basic science and mechanism behind the optoelectronic phenomena are explained in detail, to aid readers interested in the structure-property symbiosis in semiconducting nanomaterials. In short, the book offers a valuable reference guide for researchers and academics in the areas of material science and semiconductor technology, especially nanophotonics and electronics.
ISBN: 9789811533143$q(electronic bk.)
Standard No.: 10.1007/978-981-15-3314-3doiSubjects--Topical Terms:
216041
Nanostructured materials.
LC Class. No.: TA418.9.N35 / N366 2020
Dewey Class. No.: 620.115
Nanostructured metal oxides and devicesoptical and electrical properties /
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This book primarily covers the fundamental science, synthesis, characterization, optoelectronic properties, and applications of metal oxide nanomaterials. It discusses the basic aspects of synthetic procedures and fabrication technologies, explains the related experimental techniques and also elaborates on the current status of nanostructured oxide materials and related devices. Two major aspects of metal oxide nanostructures - their optical and electrical properties - are described in detail. The first five chapters focus on the optical characteristics of semiconducting materials, especially metal oxides at the nanoscale. The following five chapters discuss the electrical properties observed in metal oxide-based semiconductors and the status quo of device-level developments in a variety of applications such as sensors, transistors, dilute magnetic semiconductors, and dielectric materials. The basic science and mechanism behind the optoelectronic phenomena are explained in detail, to aid readers interested in the structure-property symbiosis in semiconducting nanomaterials. In short, the book offers a valuable reference guide for researchers and academics in the areas of material science and semiconductor technology, especially nanophotonics and electronics.
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