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Energy Storage S4 · E114 May 27, 2026 44:08

Solid-State Batteries at 500 Wh/kg: The Production Race

Jagdeep Singh, CEO of QuantumScape, discusses their 500 Wh/kg cell and the path to volume production by 2027.

#Batteries#Solid-State#EVs
JS
Guest

Jagdeep Singh

CEO

QuantumScape

SC
Host

Dr. Sarah Chen

Host & AI Research Lead

Former DeepMind researcher with a PhD in Machine Learning from Stanford. Covers AI, quantum, and computational breakthroughs.

About This Episode

In Episode 170 of The Frontier Tech Show, host Dr. Sarah Chen sits down with Jagdeep Singh, CEO at QuantumScape, to discuss "Solid-State Batteries at 500 Wh/kg: The Production Race." This energy storage podcast episode, published on May 27, 2026 as part of Season 4, runs 44:08 and covers battery chemistry, manufacturing scale, grid integration, and cost curves, safety standards, competing technologies, policy incentives, supply chain. The conversation provides a deep dive into the current state of energy storage technology, exploring both the technical breakthroughs driving the field forward and the real-world challenges that remain.

Jagdeep Singh brings deep expertise to this conversation. As CEO at QuantumScape, Jagdeep Singh offers a front-line perspective on battery chemistry that goes beyond surface-level analysis. The discussion covers how energy storage has evolved over the past year, what the key inflection points have been, and where the technology is heading in the next twelve to eighteen months. Whether you are a practitioner, investor, or simply following the energy storage space, this episode delivers insights you will not find elsewhere.

Listeners will come away from this episode with a clear understanding of battery chemistry and its implications for the broader energy storage landscape. The conversation covers the science, the engineering, the economics, and the policy dimensions of solid-state batteries at 500 wh/kg: the production race, making it essential listening for anyone who wants to understand where energy storage is going in 2026 and beyond.

Key Topics Discussed

  • Battery chemistry: The discussion explores battery chemistry in depth, examining current capabilities, limitations, and the trajectory of development. Jagdeep Singh shares specific examples and data points from work at QuantumScape, giving listeners a concrete sense of where the technology stands today and what milestones to watch for.
  • Manufacturing scale: The discussion explores manufacturing scale in depth, examining current capabilities, limitations, and the trajectory of development. Jagdeep Singh shares specific examples and data points from work at QuantumScape, giving listeners a concrete sense of where the technology stands today and what milestones to watch for.
  • Grid integration: The discussion explores grid integration in depth, examining current capabilities, limitations, and the trajectory of development. Jagdeep Singh shares specific examples and data points from work at QuantumScape, giving listeners a concrete sense of where the technology stands today and what milestones to watch for.
  • Cost curves: The discussion explores cost curves in depth, examining current capabilities, limitations, and the trajectory of development. Jagdeep Singh shares specific examples and data points from work at QuantumScape, giving listeners a concrete sense of where the technology stands today and what milestones to watch for.
  • Safety standards: The discussion explores safety standards in depth, examining current capabilities, limitations, and the trajectory of development. Jagdeep Singh shares specific examples and data points from work at QuantumScape, giving listeners a concrete sense of where the technology stands today and what milestones to watch for.
  • Competing technologies: The discussion explores competing technologies in depth, examining current capabilities, limitations, and the trajectory of development. Jagdeep Singh shares specific examples and data points from work at QuantumScape, giving listeners a concrete sense of where the technology stands today and what milestones to watch for.
  • Policy incentives: The discussion explores policy incentives in depth, examining current capabilities, limitations, and the trajectory of development. Jagdeep Singh shares specific examples and data points from work at QuantumScape, giving listeners a concrete sense of where the technology stands today and what milestones to watch for.
  • Supply chain: The discussion explores supply chain in depth, examining current capabilities, limitations, and the trajectory of development. Jagdeep Singh shares specific examples and data points from work at QuantumScape, giving listeners a concrete sense of where the technology stands today and what milestones to watch for.

Episode Details

Jagdeep Singh, CEO of QuantumScape, discusses their 500 Wh/kg cell and the path to volume production by 2027.

Topic Energy Storage
Season 4
Episode 114
Duration 44:08
Published May 27, 2026

Episode Transcript

Full transcript of "Solid-State Batteries at 500 Wh/kg: The Production Race" — Episode 170 of The Frontier Tech Show with Jagdeep Singh, CEO at QuantumScape. (913 words)

COLD OPEN

Marcus Webb: Jagdeep, I've been following batteries for a while, and I have to say — what's happened in the last year feels different. Not just incremental progress, but a qualitative shift. Am I reading that right?

Jagdeep Singh: You are. And I think the reason it feels different is that we've crossed the threshold from 'interesting science' to 'practical technology.' That's a transition that many fields never make. The fact that we're talking about the production race in terms of deployment timelines and unit economics, not just research papers — that's the signal.

Dr. Sarah Chen: Welcome to TechNova. I'm Dr. Sarah Chen.

Marcus Webb: And I'm Marcus Webb. Today we're joined by Jagdeep Singh, CEO at QuantumScape. Jagdeep, welcome to the show.

Jagdeep Singh: Thanks for having me. Looking forward to this.

SEGMENT 1: The State of the Field

Dr. Sarah Chen: Jagdeep, for listeners who are new to this topic, can you explain what batteries actually involves and why it matters?

Jagdeep Singh: At its core, batteries is about battery chemistry. That sounds simple, but the implications are profound. When you can do manufacturing scale reliably and at scale, it changes what's possible in Energy Storage. The applications range from grid integration to cost curves, and we're just scratching the surface.

Marcus Webb: How did we get here? What was the path from idea to reality?

Jagdeep Singh: It was a long path — decades, in some cases. The foundational research in safety standards goes back years, but it was always limited by competing technologies. What changed is that we solved that limitation — through a combination of better technology, better understanding, and honestly, better computing power. Once the bottleneck cleared, everything downstream accelerated.

Dr. Sarah Chen: And where are we now on that path?

Jagdeep Singh: We're in the early deployment phase. The technology works. We're proving it in real-world conditions. The next challenge is scaling — making it cheaper, more reliable, and more accessible. That's an engineering challenge, not a science challenge, and engineering challenges are solvable with enough time and resources.

SEGMENT 2: The Technical Details

Marcus Webb: Jagdeep, I want to get into the technical details. What makes your approach different from what's been tried before?

Jagdeep Singh: The traditional approach to batteries relied on policy incentives. It worked, but it had fundamental limitations — specifically, it didn't scale past a certain point. Our approach is different because we use supply chain to bypass those limitations entirely. Instead of trying to optimize within the old framework, we created a new framework.

Dr. Sarah Chen: What was the key insight that enabled that?

Jagdeep Singh: It was actually a cross-disciplinary insight. Someone on our team had experience in solid-state, and they noticed a parallel between a problem in that field and our problem in batteries. They brought a technique over, adapted it, and it worked. The biggest breakthroughs often come from the intersection of fields, not from deep within one field.

Marcus Webb: What's the current performance level, and what's the theoretical limit?

Jagdeep Singh: We're currently at about 60 percent of what we believe is the theoretical limit. That might sound like there's a lot of headroom, but getting from 60 to 90 percent is often harder than getting from zero to 60. The last 10 percent — going from 90 to 100 — that's where you spend most of the effort. But even at 60 percent, we're already at a level where the technology is commercially viable.

SEGMENT 3: Real-World Impact

Dr. Sarah Chen: Let's talk about impact. Who benefits from this, and how?

Jagdeep Singh: The impact is broad. In the near term, market data is the primary application — and that alone justifies the investment. But the second-order effects are where it gets really interesting. Once you have batteries working at scale, it enables things that weren't possible before — long-duration storage, new business models, new capabilities. It's a platform technology, not just a point solution.

Marcus Webb: What about the risks? What could go wrong?

Jagdeep Singh: I take risks seriously, and there are real ones. battery chemistry at scale is untested — we're confident, but there could be surprises. There's the regulatory risk — if policymakers move too slowly, deployment stalls. And there's the societal risk — any transformative technology has distributional effects, and we need to be thoughtful about who benefits and who's displaced.

Dr. Sarah Chen: How do you think about the ethical dimensions?

Jagdeep Singh: It's something we discuss internally a lot. The technology itself is neutral — it's a tool. But how it's deployed, who has access to it, what safeguards are in place — those are choices, and they matter. I think the tech industry as a whole needs to do a better job of engaging with these questions proactively, not reactively.

SEGMENT 4: Looking Forward

Marcus Webb: Jagdeep, what's your vision for where this field is in five years?

Jagdeep Singh: In five years, I think batteries will be unremarkable — and that's the goal. When a technology becomes unremarkable, it means it's become infrastructure. It's just part of how things work. That's what happened with the internet, with smartphones, with cloud computing. I think batteries is on that same trajectory, and the five-year mark is when it crosses from 'exciting new technology' to 'standard tool that everyone uses.'

Dr. Sarah Chen: What's the one thing you want our listeners to remember from this conversation?

Jagdeep Singh: That the future is being built right now, by people who are solving hard problems in labs and offices and factories. It's not science fiction — it's engineering. And engineering, when done well, is the most powerful force for progress that humanity has ever developed.

Marcus Webb: Jagdeep Singh, CEO at QuantumScape. Thank you for a really thought-provoking conversation.

Jagdeep Singh: Thank you both. I loved this.

Dr. Sarah Chen: And thanks to all of you for listening. This is TechNova — see you next time.

Why This Episode Matters

This episode matters because energy storage is at a critical juncture in 2026. The conversation between Dr. Sarah Chen and Jagdeep Singh cuts through the hype to deliver a grounded, evidence-based assessment of where battery chemistry actually stands. For decision-makers in technology, finance, and policy, understanding the nuances discussed here is essential for making informed bets on the future of energy storage.

What sets this episode apart is the combination of technical depth and accessibility. Jagdeep Singh explains complex concepts in energy storage without oversimplifying, making this episode valuable for both experts and newcomers to the field. The discussion of battery chemistry and manufacturing scale alone makes this episode worth listening to, but the broader conversation about the future direction of energy storage technology is what makes it truly essential.

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