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Meeting Materials Science & Technology 2020
Symposium Functional Defects in Electroceramic Materials
Presentation Title Thermodynamic Insights into Engineering 2D Nano-ceramics Towards Powering Portable Electronic Devices
Author(s) Cody B. Cockreham, Xianghui Zhang, Gengnan Li, Hongwu Xu, Di Wu
On-Site Speaker (Planned) Cody B. Cockreham
Abstract Scope Two-dimensional (2D) nano-ceramic materials like transition metal-based layered double hydroxides (TM-LDH) and layered early transition metal carbides and nitrides (MXenes) are at the forefront of developing high-performance materials to meet the energy storage and power storage demands of portable electronics. Due to the presence of redox capable transition metals and large available surface areas, 2D nano-ceramics provide good specific capacitance and fast charge/discharge rates. These pseudocapacitive materials store charge with redox and intercalative active surface sites. To promote stable active surface sites we tune the chemistry, structure, and morphology. Manipulating the synthesis conditions of MXenes and TM-LDHs, we study the resulting relationships by investigating interlayer species, surface composition, structural/morphological order, and electrochemical performance. Using calorimetry, we probe the energetics of stability and surface interactions. By drawing connections with thermodynamic parameters to the synthesis-controlled variables of our engineered nano-ceramics, we provide insights to advance the design of functional ceramics.

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

Co-doping Strategies for Controlling Electrical Conductivity of BaTiO3 Ceramics
Defects Engineering in Epitaxial Complex Oxides for Designed Functionality
Design of Functional Decompositions for Solid State Batteries
Designing Optimal Defect Environments for High Ionic Conductivity and Surface Catalytic Reactions
Energetic Compromise for Achieving “Redox-Site-Rich” in Pseudocapacitive Energy Storage Materials: A Case Study of Nickel – aluminum Layered Double Hydroxides
Energetic Landscape of Functionally Modified 2D Nano-ceramics for Energy Storage
Formation of Two-dimensional Heterointerface in Layered Oxides for Improved Electrode Performance
Functional Defects by Design in Energy and Quantum Materials
Structure and Energetics of Point Defects in Titanium Dioxide
Thermodynamic Insights into Engineering 2D Nano-ceramics Towards Powering Portable Electronic Devices

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