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Titlebook: Chemically Deposited Nanocrystalline Metal Oxide Thin Films; Synthesis, Character Fabian I. Ezema,Chandrakant D. Lokhande,Rajan Jose Book 2

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https://doi.org/10.1007/978-3-030-68462-4Thin Films; Metal Oxides; Materials Characterization; Chemical Deposition; Nanocrystalline metal oxide t
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Protocol Specification and Testing methods are the most successful theoretical tools to model and predict material properties, including that of metal oxides. In this chapter, DFT calculations of the perovskite material, BaTiO., have been taken as a candidate metal oxide and elaborated its structural and electronic properties, takin
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Specification Languages for Communicationicient charge transport that occurs at their interface. Silicon heterojunction solar cells are becoming an interesting area of research that substituted the p-n structure. The contacts at the heterojunctions serve as semipermeable membranes that selectively allow one carrier to permeate through whil
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https://doi.org/10.1007/978-1-4684-5778-0optical, electrical, chemical, and structural properties. These unique properties have enabled metal oxides to demonstrate versatile function in various types of solar cells (first-, second-, and third-generation). The metal oxides have efficiently demonstrated their performance as back contacts, ab
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The Reference Model and its Layerso separate and transport the charges effectively. Metal oxides, due to their high chemical stability, easy processability and low cost, are most suitable as transport layers. Depending upon nature and band positions, the metal oxides can be used either as an electron or as a hole transport layer. Tr
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