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Arcturus in Los Angeles is looking for a Lead Nanomaterials Engineer to define their carbon nanomaterials strategy and translate scientific insights into product performance. This role offers a unique opportunity to be a founding member of the team, shaping the company's approach to advanced materials.
The ideal candidate has a PhD or MS related to materials science and at least 8 years of applied research leadership. If you’re driven by innovation and have deep expertise in carbon nanomaterials, we want to hear from you!
Los Angeles, CA (in-person)
Arcturus is creating a new wire technology stack that uses carbon nanomaterials to overcome the materials limitations of metals where performance breaks down, at real operating temperatures. Our technology is designed to significantly improve the performance of electric motors for drones and robotics, heat sinks, and ultimately the entire energy grid. At its core, Arcturus is developing a new class of carbon nanomaterial‑infused metal matrix composites for high‑performance conductor applications.
This is a ground‑floor opportunity to help build something that has never been done before.
You would join as a founding engineer and become Arcturus’ first nanomaterials engineer, with the chance to define the company’s carbon nanomaterials strategy from the beginning. As the founding nanomaterials engineer, you will work directly with the founder and CEO to shape the technical direction of the company, translate scientific insight into real product performance, and help build a category‑defining materials platform from scratch.
We are seeking a lead nanomaterials engineer who can set the technical direction for our carbon nanomaterials strategy and translate fundamental science into measurable, scalable improvements in conductor performance. This person will help define how carbon nanomaterials are integrated into metal matrix composites, including approaches related to covetics and other carbon‑metal interface architectures, to unlock meaningful improvements in electrical, thermal, and mechanical performance.