Title : Synthesis of low dimensional perovskites and composites for display devices and memristor applications

Type of Material: Thesis
Title: Synthesis of low dimensional perovskites and composites for display devices and memristor applications
Researcher: Mary Vijila, C V
Guide: Jayaraj, M K and Rajeev Kumar, K
Department: Department of Physics
Publisher: Cochin University of Science & Technology, Cochin
Place: Cochin
Year: 2022
Language: English
Subject: Growth techniques - LARP
Orgnaic Inorganic perorskites
Physical Sciences
Physics
Physics
Physical and Basic Sciences
Dissertation/Thesis Note: PhD; Department of Physics, Cochin University of Science & Technology, Cochin, Cochin; 2022
Fulltext: Shodhganga

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035__|a(IN-AhILN)th_456534
040__|aCUST_682022|dIN-AhILN
041__|aeng
100__|aMary Vijila, C V|eResearcher
110__|aDepartment of Physics|bCochin University of Science & Technology, Cochin|dCochin|ein|0U-0253
245__|aSynthesis of low dimensional perovskites and composites for display devices and memristor applications
260__|aCochin|bCochin University of Science & Technology, Cochin|c2022
300__|axiv, 163|dDVD
502__|cDepartment of Physics, Cochin University of Science & Technology, Cochin, Cochin|d2022|bPhD
518__|d2022|oDate of Award
518__|oDate of Registration|d2017
520__|aMaterials with the chemical formula AMX3 are called perovskites after the discovery of CaTiO3 in 1839. Halide perovskites containing halogen anions instead of oxygen anions were reported in 1893. However, the interest in materials studies and applications started only after using methylammonium lead iodide in solar cells in 2009. Perovskites are also good light emitters with high color purity and low non-radiative recombination. Perovskites possess high light absorption coefficients ranging from 104 to 105 cm-1 . Bandgap tuning across IR to UV is obtainable from perovskites by mixing different anions and cations. Perovskites are ambipolar due to their balanced electron and hole-effective masses. The diffusion length of polycrystalline and single-crystalline methylammonium lead iodides is very high. Due to their excellent material properties, their applications include solar cells, LED, lasers, ferroelectric, thermoelectric, and piezoelectric devices, artificial synapse, and resistive memory. Even though the
650__|aPhysics|2UGC
650__|aPhysical and Basic Sciences|2AIU
653__|aGrowth techniques - LARP
653__|aOrgnaic Inorganic perorskites
653__|aPhysical Sciences
653__|aPhysics
700__|eGuide|aJayaraj, M K and Rajeev Kumar, K
856__|uhttp://shodhganga.inflibnet.ac.in/handle/10603/456764|yShodhganga
905__|afromsg

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