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Meeting MS&T23: Materials Science & Technology
Symposium Advances in Dielectric Materials and Electronic Devices
Presentation Title D-8: Transition Metal Chalcogenide Perovskites for Energy Applications
Author(s) Sanjukta Mukherjee
On-Site Speaker (Planned) Sanjukta Mukherjee
Abstract Scope Transition metal chalcogenides perovskite (TMPCs), a novel class of perovskites with rich tunability in functionalities, are gaining increased attention for applications in electronic, photonic, and energy technologies. TMPCs have a general chemical formula of ABX3, where A is an alkaline earth metal (Ba, Sr ), B is a transition metal ( Ti, Zr ) and X is a chalcogen (S, Se). Though these materials have been explored for optoelectronic and photonic applications , their thermoelectric properties remain undiscovered. Although chalcogenides like tellurides and selenides have shown reasonably good thermoelectric performance determined by their figure of merit (ZT= α2σT/κ), these materials suffer from high cost, toxicity, high temperature instability etc. The sulphide based TMPCs being cost effective and environmentally benign can emerge as an alternative solution for novel low cost thermoelectrics. Furthermore, the rich tunability with respect to their structural diversity offers an opportunity to innovate desired functionalities for energy applications.

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

Additive Manufacturing of Flex Sensors: Characterization and Evaluation
Anderson’s Localization in Perovskites: Excellent Tool to Decouple Electron and Heat Transport in Oxide Thermoelectrics
CMOS-compatible Oxide Memristors Based on SiO2 for Adaptive Neuromorphic Computing
D-1: Designing Rare Earth Free High Entropy Oxide with Tungsten Bronze Structure for Thermoelectric Application
D-2: Effect of Solvent Selection for In-film Reactions Yielding Zinc Oxide Nanostructures
D-3: Enhanced Thermoelectric Performance of Nanocomposite with New Generation 2D Material MXene
D-5: Influence of the Synthesis Conditions on the Structural and Microstructural Properties of PbTiO3 Ferroelectric Thin Films
D-6: Investigation of Charge Transport Mechanism in Ba Doped Sr2CrMoO6 Double Perovskite Mixed Ionic Electronic Conductor
D-7: Investigation of the Dielectric Response in AgNbO3-based Ferroelectric Ceramics
D-8: Transition Metal Chalcogenide Perovskites for Energy Applications
Design for in-situ Computer Vision-based Automation of Drop-on-Demand Inkjet Drop Formation Optimization
Domain Tailoring in Magnetic ZnFe2O4 Ferrite by Reactive Flash Sintering Technique
Electrical-lead-related Stray Inductance Causing Overassessment of the Electrical Resistance Measured by Using the Two-probe Method
Engineering the Carrier Density for Thin Film Transistors Using Multimodal Encapsulation of p-SnOx
Enhancement of Ferroelectric and Electrocaloric Properties in Relaxor Ceramics via Processing-related Microstructural Features
Fabrication of Fexible Nanocomposites Based on PVC, Electrical and Magnetic Nano-fillers for the Shielding Against Unwanted Electromagnetic Waves
Ferroelectricity in 2D Sn-based Monochalcogenides and Their Heterostructures
Hybrid Solder Joints: Morphology and Shear Strength of Sn-3.5Ag Solder Joints Prepared Using Flux Doped with Ceramic Nanoparticles
Influence of Electron Beam Irradiation on the Electrical and Optical Properties of InGaZnO Thin Film Transistor
Interfacial-type Memristive Devices for Neuromorphic Computing
Investigation of the Effects of the Most Common Impurities of Bayer Alumina on the Dielectric Properties
Magnetically Assisted High-specificity Targeted Drug Delivery Using Magnetoelectric Nanorobots
Magnetoelectric Nanorobot - A Revolutionary Nanoscale Device for Targeted Treatment
Performance of Distorted Perovskites for Dielectric Applications
Piezopermittivity for Capacitance-based Stress/Strain Sensing
PLD Growth of Highly Crystalline STO and PZT on Graphene Oxide-Buffered Silicon Surface
Polar Nanostructure in Composition Modulated Pb(Zr,Ti)O3 Superlattice
Processing and Properties of Diamond Crystals for Quantum Applications
VQE Simulation of Van Der Walls Materials

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