2023 Archived Content

Cambridge EnerTech’s

Battery Chemistries for Automotive Applications

Recent Advancements in Battery Chemistries

DECEMBER 12-13, 2023



As the electric vehicle market continues to expand, the need for affordable battery technology grows. Battery chemistries and materials must be improved and optimized while remaining cost-competitive to conventional internal combustion engines. This year’s Battery Chemistries for Automotive Applications symposium will bring together OEM companies, their supply chain, and academic researchers to discuss the key challenges they face in creating better batteries and share their technological advancements. Presentations will focus on high-energy lithium-ion chemistry as well as other chemistries including sodium-ion, lithium-metal systems, silicon anodes, NMC cathodes, and solid-state technologies.

Monday, December 11

Registration Open until 4:30 PM7:00 am

Peak Registration Hours are Monday 7:00 - 8:30 am & Tuesday 7:30 - 8:30 am. Avoid lines come pick up your badge on Sunday or Monday after 9:00 am.

Tuesday, December 12

Registration and Morning Coffee7:30 am

Organizer's Welcome Remarks8:30 am

Craig Wohlers, Executive Director, Conferences, Cambridge EnerTech

LITHIUM-METAL

8:35 am

Chairperson's Remarks

Martin Winter, PhD, Director & Professor, Electrochemical Energy Technology, University of Muenster

8:40 am

Electrode/Electrolyte Interfaces and Interphases

Venkat Srinivasan, PhD, Director, Center for Collaborative Energy Storage Science, Argonne National Laboratory

Martin Winter, PhD, Director & Professor, Electrochemical Energy Technology, University of Muenster

Li-metal-based batteries, crucial for transportation decarbonization, are limited by processes at the electrode-electrolyte interface. Based on extensive discussions among leading battery researchers from the US and Germany, a collaborative research program was established that brought together experts from the two countries to understand these challenges. In this presentation, we will describe the progress of this collaboration and the insights gained that can help accelerate the commercialization of Li-metal-based batteries.

9:00 am

Overcoming Charge Anxiety and Meeting Customer Expectations with Energy Dense Lithium-Metal Batteries

Brian Sisk, PhD, CTO, Sepion Technologies

In this presentation, we will review consumer-driven market requirements for fast-charge, brake regeneration, low-temperature operation, and related challenges that must be met before lithium metal anodes can capably displace graphite-based anodes – let alone combustion engines – as the dominant vehicle motive technology.  We will review Sepion’s innovation around separators and liquid electrolytes required for commercial adoption of Li-metal anodes.  Finally, we will show how this technology has the potential to unlock the trifecta of greater energy density, faster charging, and lower cost by delivering innovations around separators and liquid electrolytes required for commercial adoption of Li-metal anodes.

9:20 am

Designing Sulfurized Polymers as Stable Cathode Materials for Lithium Batteries

Ping Liu, PhD, Professor and Director, Sustainable Power and Energy Center, University of California, San Diego

The community has focused on building nanocomposites of sulfur to provide electronic conductivity, confinement of soluble polysulfides, and faster kinetics with various catalytic agents. Yet these approaches face increasing challenges in the case of lean electrolytes due to the need to facilitate the reaction through the dissolution mechanism.

9:40 am MODERATED Q&A:

Session Wrap-Up

PANEL MODERATOR:

Martin Winter, PhD, Director & Professor, Electrochemical Energy Technology, University of Muenster

PANELISTS:

Venkat Srinivasan, PhD, Director, Center for Collaborative Energy Storage Science, Argonne National Laboratory

Brian Sisk, PhD, CTO, Sepion Technologies

Ping Liu, PhD, Professor and Director, Sustainable Power and Energy Center, University of California, San Diego

Grand Opening Coffee Break in the Exhibit Hall with Poster Viewing10:00 am

LITHIUM-METAL (CONT.)

10:40 am

Lithium-Metal Batteries: Electrolytes and Tools

Sang Cheol Kim, PhD, Postdoctoral Fellow, Stanford

This presentation discusses the development of new electrolyte chemistries for enhanced electrochemical performance, and new tools for studying solvation structures.

11:00 am

Scaling High Performance Lithium Metal Batteries with Dry Process 3D Printing

Arwed Niestroj, Senior Vice President, E Mobility & Product, C Level, Sakuu Corp.

Sakuu has completed the development of its Cypress lithium-metal battery showing high-energy density, high power, highest safety, best cycle life, and availability for licensing to manufacturers. Sakuu's industrial speed dry process 3D printing enables significant cost savings and the world's first 3D-printed patterned Li-metal batteries, allowing increased battery pack energy densities from consumer industry products to automotive EV.

11:20 am Performance of Lyten’s Cylindrical and Pouch Li-S Cells

Kumar Bugga, Senior Fellow, Lyten

Combining its unique 3D graphene sulfur host with several advanced cell components, Lyten is developing next-generation Li-S cells with higher specific energy than Li-ion batteries. Lyten has begun manufacturing commercial cylindrical and pouch cells on semi-automatic assembly lines.  We will present the performance of these cells and outline our roadmap for advancing Lyten’s low-cost, high-energy, and green Li-S technology for EVs.

11:40 am MODERATED Q&A:

Session Wrap-Up

PANEL MODERATOR:

Venkat Srinivasan, PhD, Director, Center for Collaborative Energy Storage Science, Argonne National Laboratory

PANELISTS:

Sang Cheol Kim, PhD, Postdoctoral Fellow, Stanford

Arwed Niestroj, Senior Vice President, E Mobility & Product, C Level, Sakuu Corp.

Kumar Bugga, Senior Fellow, Lyten

Networking Lunch12:00 pm

SILICON ANODE

1:00 pm

Chairperson's Remarks

Shirley Meng, PhD, Professor, University of Chicago; Chief Scientist, Argonne Collaborative Center for Energy Storage Science, Argonne National Laboratory

1:05 pm

Replacing Graphite with Sila's Silicon: Shipping and Validating Today

Kurt Kelty, Vice President, Automotive, Sila Nanotechnologies, Inc.

As we begin the transition from fossil fuel dependency to clean and renewable-based energy, the world needs proven, dependable and tangible examples of sustainable products. Kurt Kelty will discuss how innovative drop-in-replacement nanocomposite, silicon-based anode powder enables up to 20% more energy density today over state-of-the-art lithium-ion cells with graphite, without performance compromise. This material is shipping today and is ready to scale to meet larger demand and power EVs by the middle of this decade.

1:25 pm

Enovix BrakeFlow Technology: A Breakthrough in Next-Gen Battery Safety

Robert Rosen, PhD, Senior Director, Strategic Materials, ENOVIX Corp

The Enovix stacked cell architecture, which uses a silicon anode, upends the conventional paradigm and enables both an increase in energy density, and a high level of abuse tolerance to reduce the risks of an internal short due to its BrakeFlow technology. With BrakeFlow incorporated, instead of a sudden catastrophic release of energy, the battery is designed to discharge safely and slowly.

1:45 pm

Binders vs. Structural Additives—The Key to Maximum Silicon Anode Performance

Manuel Wieser, CTO, AnteoTech Ltd.

Binders and structural additives constitute the smallest fraction of anode compositions, yet they are critically important to achieve long cycle life. This is particularly relevant for silicon containing anodes where SiOx, Si/C or Si materials are used to increase anode storage capacity. While binder chemistries have been evolving over the past years, structural additives such as AnteoTech’s binder additive, Anteo X, or carbon additives present new strategies that aim to minimize inactive materials, yet propelling silicon anodes forward by 100s of cycles.

2:05 pm MODERATED Q&A:

Session Wrap-Up

PANEL MODERATOR:

Shirley Meng, PhD, Professor, University of Chicago; Chief Scientist, Argonne Collaborative Center for Energy Storage Science, Argonne National Laboratory

PANELISTS:

Kurt Kelty, Vice President, Automotive, Sila Nanotechnologies, Inc.

Robert Rosen, PhD, Senior Director, Strategic Materials, ENOVIX Corp

Manuel Wieser, CTO, AnteoTech Ltd.

Refreshment Break in the Exhibit Hall with Poster Viewing (Sponsorship Opportunity Available)2:20 pm

CATHODES

3:15 pm

Chairperson's Remarks

Shirley Meng, PhD, Professor, University of Chicago; Chief Scientist, Argonne Collaborative Center for Energy Storage Science, Argonne National Laboratory

3:20 pm

Next-Generation Cobalt-Free Manganese-Rich Cathodes for Long-Range EVs

Jay F. Whitacre, PhD, CEO & CTO, Materials Science & Engineering, Stratus Materials

This talk will introduce a new class of cathode materials to the battery community; the Stratus Materials "LXMO" product line will be explained, and results from large-format (>5Ah) full cells demonstrating a full suite of materials capabilities will be shared. The data show that this chemistry can outperform nickel-rich cathodes while costing significantly less and having superior safety characteristics.

3:40 pm Talk Title to be Announced

Kenan Sahin, PhD, President & Founder, CAMX Power

4:00 pm MODERATED Q&A:

Session Wrap-Up

PANEL MODERATOR:

Shirley Meng, PhD, Professor, University of Chicago; Chief Scientist, Argonne Collaborative Center for Energy Storage Science, Argonne National Laboratory

PANELISTS:

Jay F. Whitacre, PhD, CEO & CTO, Materials Science & Engineering, Stratus Materials

Kenan Sahin, PhD, President & Founder, CAMX Power

SOLID-STATE

4:15 pm

Chairperson's Remarks

Venkat Srinivasan, PhD, Director, Center for Collaborative Energy Storage Science, Argonne National Laboratory

4:20 pm

Scaling-Up High Energy Density Solid-State Batteries

Shirley Meng, PhD, Professor, University of Chicago; Chief Scientist, Argonne Collaborative Center for Energy Storage Science, Argonne National Laboratory

Recent years have seen monumental and exciting developments in the field of all-solid-state batteries (ASSBs). Despite its promises, they still face a multitude of technical hurdles before commercialization can be achieved. In this talk, I will provide a perspective on a wide range of scalability challenges and considerations for ASSBs, including solid electrolyte synthesis, dry electrode and separator processing, cell assembly, and stack pressure considerations at the module level.

4:40 pm

Hydro-Quebec’s Solutions for Practical Solid-State Batteries Using New-Generation Lithium-Metal Anode

Chisu Kim, PhD, Director Research, CEETSE, Hydro Quebec Research Institute IREQ

Hydro-Quebec is actively developing a new-generation lithium metal anode technology, named as UTFL2.0, which is designed to provide a higher volumetric energy density at a significantly reduced cost. UTLF2.0 exhibits compatibility with both liquid and solid electrolytes, offering flexible adaptability to control thickness and width without compromising productivity through a high-speed roll-to-roll process. This presentation will demonstrate the key features of UTLF2.0 and introduce the polymer and sulfide-based solid-state batteries under development by Hydro-Quebec by leveraging the advanced UTLF technologies and new solid-electrolyte families.

5:00 pm

Solid-State Batteries

Juergen Janek, PhD, Professor, Solid-State Ionics & Electrochemistry, Justus Liebig University, Giessen

The lithium ion conductivity of sulfide solid electrolytes is unbeaten, and their mechanical properties allow roll-to-roll procesing. Interface issues can be overcome by interlayer and coating design, and the evolution of H2S can be mitigated by chemical design. In this presentation, the current status of sulfide-based SSBs and the recent development of halide solid electrolytes will be briefly discussed, as well as the potential need for targeted design of cathode active materials for SSBs.

5:20 pm LMFP: Cell Performance and Manufacturing Technology

Vincent Huang, PhD, Senior Manager, Research & Development, HCM CO., LTD.

LMFP has attracted more attentions because of the advantages such as high safety, longer cycle life and high voltage. We believe that LMFP will become one of the key materials in Lithium-ion battery industry. In this talk, I will introduce who we are, and the insight into collaboration strategies and manufacturing technology. From the aspect of LMFP, I will talk about LMFP/NMC composite batteries, and our synthesized LMFP which has a discharge capacity of 150 mAh/g with excellent rate capability (>15C) and lifetime >5000 cycles.

5:40 pm MODERATED Q&A:

Session Wrap-Up

PANEL MODERATOR:

Venkat Srinivasan, PhD, Director, Center for Collaborative Energy Storage Science, Argonne National Laboratory

PANELISTS:

Shirley Meng, PhD, Professor, University of Chicago; Chief Scientist, Argonne Collaborative Center for Energy Storage Science, Argonne National Laboratory

Chisu Kim, PhD, Director Research, CEETSE, Hydro Quebec Research Institute IREQ

Juergen Janek, PhD, Professor, Solid-State Ionics & Electrochemistry, Justus Liebig University, Giessen

Vincent Huang, PhD, Senior Manager, Research & Development, HCM CO., LTD.

Shih-Chieh Liao, PhD, Chief Technical Advisor, Research & Development, HCM CO., LTD.

Networking Reception in the Exhibit Hall with Poster Viewing6:00 pm

Close of Day7:00 pm

Wednesday, December 13

Registration and Morning Coffee7:40 am

Interactive Breakout Discussions7:45 am

Roundtable discussions are informal, moderated discussions with brainstorming and interactive problem-solving, allowing participants from diverse backgrounds to exchange ideas and experiences and develop future collaborations around a focused topic.


TABLE 1: Innovations in Recycling Battery Materials 
Moderator: Steven E. Sloop, President, OnTo Technology LLC


TABLE 2:  Battery Pack System Cost and Safety – Will Future xEV Battery Packs Increase in Complexity or Simplify and How Will Cost and Safety Be Impacted?
Moderator: Kevin Konecky, Battery and Energy Storage Systems Consultant, Total Battery Consulting


TABLE 3: Production Supply and Sustainability of a North American Supply Chain
Moderator: Rob Privette, Business Development Manager, North America, Umicore 


TABLE 4: Li-ion NMC Fast Charging New Cells for E-Mobility
Moderator: Shmuel De-Leon, CEO, Shmuel De-Leon Energy, Ltd.


TABLE 5: Inactive Materials: Developments in Current Collectors, Separators and Electrolytes
Moderator: Sam Jaffe, Business Development, Addionics


TABLE 6: Building the Domestic Battery Raw Material Supply Chain
Moderator: Carl Thoemmes, Business Development, Battery Materials, Koura


TABLE 7: Battery Cost vs. Passport, CO2 Footprint & Lifetime Warranty – What Does the Battery Regulation Legislation Bring?
Moderator: Wenzel Prochazka, Senior Product Manager Electrification Systems, NXP Semiconductors Austria


TABLE 8: High Percentage Silicon-Content Anodes and Cells 
Moderator: Benjamin Park, PhD, Founder & CTO, Enevate


TABLE 9: Battery Management Systems 
Moderator: Sheldon Williamson, PhD, Professor & Canada Research Chair, Electrical & Computer & Software Engineering, University of Ontario Institute of Technology​


TABLE 10: Battery Intelligence
Moderator: Eli Leland, PhD, CTO and Co-Founder, Voltaiq, Inc.


​TABLE 11: Lithium Metal Batteries
Moderator: Brian Sisk, PhD, CTO, Sepion Technologies​


TABLE 12: Battery Safety & Thermal Runaway
Moderator: Judith Jeevarajan, PhD, Vice President and Executive Director, Electrochemical Safety Research Institute, UL Research Institutes


TABLE 13: Silicon Anodes
Moderator: Manuel Wieser, Head of Energy Business, AnteoTech

SOLID-STATE (CONT.)

8:25 am

Chairperson's Remarks

Martin Winter, PhD, Director & Professor, Electrochemical Energy Technology, University of Muenster

8:30 am Enabling Lithium Metal: From Mine to Materials, Batteries, Vehicles and Data

Kang Xu, PhD, Chief Scientist, SES AI

Since its founding in 2012, SES AI has been persistently pursuing the crown jewel of all battery chemistries, rechargeable Li-Metal battery (LMB). Leveraging the knowledge derived from decades of unsuccessful efforts, SES has developed unique electrolyte systems and interphasial chemistries that have harnessed the lithium metal for excellent cycle-life, rate capability, energy density and safe operation.

Turning these technological fruitions into commercial products (100 Ah large format LMBs) for EV and eVTOL applications, SES now looks on the new horizon, engaging the frontiers of AI/ML-assisted data mining and management. The efforts span from materials discovery and tool development, rationale design of electrochemistry and cell engineering, integration of batteries into smart vehicles, recycling and recovery of key materials, and establishment and management of databases.

8:50 am Quasi-Solid-State Batteries: The Best of Both Worlds

Raimund Koerver, PhD, Director of Innovation, Factorial

Solid or quasi-solid electrolytes in batteries have potential to fulfill the growing demand for more powerful and higher energy density storage solutions. Factorial’s batteries, equipped with a lithium metal anode, have demonstrated high performance at ambient temperatures and aim to address safety concerns. The company’s proprietary electrolyte innovation realizes benefits of liquid and solid batteries, without sacrificing performance or safety. This talk covers the challenges, progress, and benefits of quasi-solid-state batteries.

9:10 am Powering High Energy and Fast-Charging Batteries with Nano-Porous Silicon

Casper Peeters, CEO, E-magy B.V.

A major improvement for the next generation of Li-ion batteries is the introduction of silicon as material for the anode, bringing capacity and fast charging to the next level. The biggest challenge of applying silicon-dominant anodes in Li-ion batteries, is silicon's tendency to expand during cycling. E-magy has invented and manufactures micron-sized silicon particles with nanopores that overcome this challenge by containing that expansion within the nanopores themselves. 

9:30 am

Recent Discoveries Made in the Tesla-Dalhousie Research Partnership on Advanced Batteries

Michael Metzger, PhD, Assistant Professor, Physics & Atmospheric Science, Dalhousie University

The Tesla-Dalhousie research partnership on long-lived, high-energy density and low-cost batteries for electric vehicles and stationary energy storage is the only academic research partnership of Tesla worldwide. In this contribution we will present impactful research results from this partnership that recently attracted widespread attention: the elimination of reversible self-discharge in lithium-ion cells and sodium-ion cells with lifetimes that rival modern lithium iron phosphate cells.

9:50 am Unlocking the Potential of Dry Cathodes with Solgain™

Andrew Sics, Executive Key Account Manager, Battery Materials Growth Platform, Solvay

With dry electrode manufacturing being a large area of development, Solvay is pushing polymer performance to the edge to meet the next-generation performance needs today. Solgain™- is the technology for “dry cathode manufacturing” that is enabled by the latest Solvay PVDF polymer. Solgain™ is an Eco friendly technology that produces a thick, highly loaded homogenous electrode. This technology supports some of the known “dry” process advantages like lowering energy consumption and reducing footprint and costs. Solgain™ also improves upon the ease and scalability for manufacturing and improves electrode performance using traditional cathode active materials. 

10:10 am MODERATED Q&A:

Session Wrap-Up

PANEL MODERATOR:

Martin Winter, PhD, Director & Professor, Electrochemical Energy Technology, University of Muenster

PANELISTS:

Michael Metzger, PhD, Assistant Professor, Physics & Atmospheric Science, Dalhousie University

Andrew Sics, Executive Key Account Manager, Battery Materials Growth Platform, Solvay

Raimund Koerver, PhD, Director of Innovation, Factorial

Casper Peeters, CEO, E-magy B.V.

Coffee Break in the Exhibit Hall with Poster Viewing (Sponsorship Opportunity Available)10:25 am

PLENARY KEYNOTE

10:55 am

Chairperson's Remarks

Craig Wohlers, Executive Director, Conferences, Cambridge EnerTech

11:00 am

LG Leading the Battery Expansion in North America

Robert Lee, President, North American & Chief Strategy Officer, LG Energy Solution

LG Energy Solution is the leading lithium-ion battery manufacturer, working with the top OEMs globally in transforming the automobile industry. The market for EVs is expanding rapidly, driven by both consumer demand and regulatory incentives. In North America, there are unprecedented levels of investment to support EVs, by both OEMs and battery manufacturers. This presentation will discuss market growth projections, announced expansion plans, and the challenges ahead.

11:20 am

A Sustainability Perspective on Near-Future Energy Storage Technologies

Ulderico Ulissi, PhD, Manager, 21C Lab, Contemporary Amperex Technology Limited (CATL)

Energy storage technologies are critical to limiting emissions, and lithium-ion batteries (LIBs) are a key technology for many applications, including automotive and stationary storage. Therefore, we expect the LIB market to continue growing rapidly. This growth is keeping up the momentum for LIB technological development, which has been largely driven towards decreasing costs and improving performance. However, as LIBs become ubiquitous it is also critical to correctly assess the sustainability impact of the technology. In this presentation we will discuss sustainability and how it is linked to product development, to critically discuss the realistic opportunities to make batteries more sustainable in the near future. This will provide the audience more insights into the CATL carbon neutrality plan, and into its pledge to achieve carbon neutrality in its core operations by 2025 and across the battery value chain by 2035.

11:40 am

USABC Battery Development Program Overview

Matt Denlinger, Battery Research Engineer, Energy Storage Research, Ford Motor Company

The United States Advanced Battery Consortium (USABC) is a subsidiary of USCAR. The organization supports advanced battery technology development and commercialization for electric vehicles via funding through a cooperative agreement with the Department of Energy. This talk will give an overview of current and past USABC programs, as well as future funding opportunities for US battery developers.

12:00 pm MODERATED Q&A:

Session Wrap-Up

PANEL MODERATOR:

Craig Wohlers, Executive Director, Conferences, Cambridge EnerTech

PANELISTS:

Robert Lee, President, North American & Chief Strategy Officer, LG Energy Solution

Ulderico Ulissi, PhD, Manager, 21C Lab, Contemporary Amperex Technology Limited (CATL)

John Kwon, General Counsel of Global Legal & Strategy, Contemporary Amperex Technology Limited (CATL)

Matt Denlinger, Battery Research Engineer, Energy Storage Research, Ford Motor Company

Networking Lunch (Sponsorship Opportunity Available)12:15 pm

Dessert Break in the Exhibit Hall with Poster Viewing (Sponsorship Opportunity Available)1:15 pm

Close of Symposium2:00 pm






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