Conference Logo ProgramMaster Logo
Conference Tools for MS&T26: Materials Science & Technology
Login
Register as a New User
Help
Submit An Abstract
Propose A Symposium
Presenter/Author Tools
Organizer/Editor Tools

About this Abstract

Meeting MS&T26: Materials Science & Technology
Symposium Nanotechnology for Energy, Environment, Healthcare and Industry
Presentation Title Atomic Layer Deposition Nano-Coatings for Extended Lithium-Ion Battery Cycle Life: A Techno-Economic Analysis
Author(s) Samantha Mendes Castellano, Thuy Tran, B. Reeja Jayan, Kate Whitefoot
On-Site Speaker (Planned) Samantha Mendes Castellano
Abstract Scope Performance and cycle-life limitations in lithium-ion batteries (LIBs) remain key barriers to the widespread adoption of cost-effective renewable energy storage. Atomic-scale engineering of thin-film coatings via Atomic Layer Deposition (ALD) offers a nanotechnology-driven pathway to address these limitations. This work couples techno-economic analysis with experimental testing of alumina (Al2O3) ALD nano-coatings on NMC811 cathodes to address the gap in understanding optimal processing parameters and large-scale economic viability. Electrochemical characterization (i.e., constant-current/rate-capability cycling, cyclic voltammetry) revealed that coated cathodes experienced a 19% decrease in specific capacity, and uncoated cathodes a 37% decrease in capacity after 110 cycles at 0.5 C, though high C-rate performance was sacrificed. By integrating performance metrics into the Levelized Cost of Storage framework, this work aims to quantify how ALD-extended battery longevity translates into reduced costs, providing a data-driven basis for evaluating ALD coatings as an economically viable pathway for increasing LIB adoption.

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

Atomic Layer Deposition Nano-Coatings for Extended Lithium-Ion Battery Cycle Life: A Techno-Economic Analysis
Characterization of Advanced Materials by Means of Aberration Corrected Transmission Electron Microscopy
Combined Effects of Magnetic, Photothermal, and Ultrasonic Enhancement of Fe₃O₄ Nanoparticle Transport across the Round Window Membrane for Inner Ear Drug Delivery
Deep Learning on Ultrasound Enables Distinction of Immunocompetent and Immunodeficient Tumors
Enhancement of Thermal Conductivity and Local Heat Transfer Characteristics Using Advanced Nanoparticles
Femtosecond Laser Nano/Micro Manufacturing for Energy and Functional Materials
J-5: Chemical Reactions with Active Particles in Confined Geometries
J-6: Surface-Functionalized Iron Oxide Nanoparticles for Neurotrophin-3 Delivery in Noise-Induced Hearing Loss Treatment
J-7: Synthesis and Characterization of Amorphous Mesoporous Silica Nanoparticles from Melon Seed Husk Ash
Metal Oxides and Graphene Based Functional Nanomaterials for High Performance Photovoltaics and Multicomponent-Detecting Sensors
Oily Wastewater Treatment with Anti-Fouling Nanomaterials
Synthesis, Physicochemical Characterization and Adsorptive Performance of Coir-Hydrated Silica Nanoparticles (CHSNPs) for Crude Oil Remediation
Ultrasound Pixel Signatures Predict CD45+ Immune Cell Infiltration via Deep Learning

Questions about ProgramMaster? Contact programming@programmaster.org | TMS Privacy Policy | Accessibility Statement