
We are Sila, a next-generation battery materials company. Our mission is to power the world’s transition to clean energy. To create this future, our team is building a better lithium-ion battery from the inside out today. We engineer and manufacture ground-breaking battery materials that significantly increase the energy density of batteries, while reducing their size and weight. The result? Smaller more powerful batteries that can unlock innovation in consumer devices and accelerate the mass adoption of electric cars to eliminate our dependence on fossil fuels. We're tackling one of the biggest challenges of our time every day, and together we're redefining what's possible. Are you ready to be a part of a team committed to changing the world?
You’re a technical and strategic leader with a strong foundation of hands-on experience as an engineer. You’ve worked in open-ended R&D environments, built hardware (and the software that runs it) from the ground up, and learned firsthand what it means to own projects from concept through operational support. You know how to deliver reliable, deterministic tools that inspire confidence in their end-users. You have a diverse background and understanding of equipment and can articulate the ‘why’ of hardware from a foundational understanding of the process it is designed for as well as the ‘how’ through an understanding of mechanics, dynamics, controls and automation, I/O sensors, and cause & effect matrices and responses. You thrive on enabling science through your team: matching the right people with the right technical problems and training/hiring to fill skill gaps. You are a leader that builds trust through giving trust and challenging and growing the skills of the team and are a seasoned listener and communicator, which helps you collaborate seamlessly with a wide range of technical and operational experts: from engineers to technicians to contractors to other managers.
You are capable of delivering multiple projects in parallel, experienced in all phases of design from early concept through validation and handoff. You develop a strong and highly-engaged team, soliciting input and debate from all levels in the organization, setting clear standards for work quality, and being a transparent decision-maker.
You’re passionate and knowledgeable about: clean energy, advanced materials, particulates, batteries, or related fields, sciences, and technologies.
The starting base pay for this role is between $211,000 and $276,640 at the time of posting. The actual base pay depends on many factors, such as education, experience, and skills. Base pay is only one part of Sila’s competitive Total Rewards package that can include benefits, perks, and equity. The base pay range is subject to change and may be modified in the future.
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We believe that building a diverse team at Sila helps us amplify our individual talents. We are an equal opportunity employer and committed to creating an inclusive environment where good ideas are free to come from anyone. We are proud to celebrate diversity and all qualified applicants are considered for employment without regard to gender, race, sexual orientation, religion, age, disability, national origin, or any other status protected by law.

We are Sila—a next generation battery materials company dedicated to accelerating energy transformation for a more sustainable future.
Our next-gen anode material is the first significant chemistry improvement to lithium-ion batteries to reach the market in 30 years. Our silicon anode material is a simple drop-in replacement to graphite and significantly boosts the energy density of lithium-ion batteries without compromising performance.
Today, Sila science powers innovative consumer electronics. Tomorrow, it will fuel our EV future and the electrification of everything.
We work directly with leading consumer electronics and automotive OEMs to help accelerate product roadmaps, and partners with battery manufacturers commercial cell production. Our partners include BMW, Daimler, and ATL.
Sila Nano’s first products significantly increase the energy density of state-of-the-art lithium-ion batteries. Our materials are manufacturable economically at scale and are drop-in replacements to existing battery manufacturing processes.