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Titlebook: Nanostructured Metal Oxides and Devices; Optical and Electric M. K. Jayaraj Book 2020 Springer Nature Singapore Pte Ltd. 2020 Metal Oxides.

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Upconversion Nanophosphors: An Overview,al. Nowadays, luminescent materials have a wide range of applications in our day-to-day life. Luminescence is happening when suitable energy is absorbed by any material, gets excited and re-emits light during de-excitation. This phenomenon happens not because of being the material above the room tem
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Optical Properties of Metal, Semiconductor and Ceramic Nanostructures Grown by Liquid Phase-Pulsed hysical phenomenon, reducing devices down to atomic scale. In the last few decades, research interest in nanostructured materials has aroused due to their unusual electronic, optical, magnetic and chemical properties which are different from their bulk counterpart. In recent years, great efforts hav
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Optical Properties of Quantum Well Structures,ures grown in such a way that a smaller band gap semiconductor layer (confinement layer) having very small thickness is sandwiched between two wider band gap semiconductor layers (barrier layer). The fabrication of symmetric and asymmetric MQW structures based on ZnO with ZnMgO and CuGaO. as the bar
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Metal Oxides-Based SERS Substrates,tion limit and offers advantages such as narrow spectral bandwidths, ability for fluorescence quenching and capacity to be used with or without optical labels. Henceforth, SERS is a good choice for cellular imaging and biosensing, detection of chemical and bioanalytes, explosives, etc. In SERS, the
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,One-Dimensional ZnO Nanostructure: Growth & Device Applications,f techniques for the fabrication of ZnO nanostructures.  Most of these techniques are solution-based processes. Though there is a huge increase in surface to volume ratio for ZnO nanoparticles compared to that of bulk, the number of grain boundaries is also more. In one dimensional nanostructures, t
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Metal Oxide Semiconductor Gas Sensors,The development of high-precision gas sensors plays a crucial role in our daily life for the real-time monitoring of toxic gases in the atmosphere. Various types of gas sensors have been employed, but extensive studies were carried out on semiconducting metal oxide nanostructure-based gas sensors be
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Metal-Oxide Transistors and Calculation of the Trap Density of States in the Band Gap of Semiconduccharacteristic electronic properties of these materials make it a promising candidate as channel layer for the fabrication of high-performance devices. However, the p-type oxide and n-type organic TFTs are not stable because of their inherent electronic properties and the existence of a large amount
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978-981-15-3316-7Springer Nature Singapore Pte Ltd. 2020
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