1

Nano Robotics Jobs in California (NOW HIRING)

Lead Carbon Nanomaterials Engineer

Los Angeles, CA · On-site

$110K - $145K/yr

Lead Nanomaterials Engineer Los Angeles, CA (in-person) About Arcturus Arcturus is creating a new ... and robotics, heat sinks, and ultimately the entire energy grid. At its core, Arcturus is ...

About Arcturus Arcturus is creating a new wire technology stack that uses carbon nanomaterials to ... and robotics, heat sinks, and ultimately the entire energy grid. At its core, Arcturus is ...

... robotic arms, quadrupeds, humanoids, etc.), multiple sensors (RGB cameras, LiDAR, IMU, depth sensors, etc.), and compute platforms (NVIDIA Thor, Jetson Nano, Orin, Xavier, etc.) * Perform hardware ...

... robotics, biotechnology, and nanotechnology. We study the logical foundations of scalable systems beyond the scope of traditional testing or simulation, and we create and apply high-level tools for ...

New

Intern

Menlo Park, CA · On-site

$40/hr

... robotics, biotechnology, and nanotechnology. We study the logical foundations of scalable systems beyond the scope of traditional testing or simulation, and we create and apply high-level tools for ...

New

Lead Process Engineer

Los Angeles, CA · On-site

$111K - $144K/yr

... and robotics, heat sinks, and ultimately the entire energy grid. At its core, Arcturus is ... Partner with additive manufacturing and nanomaterials leads to ensure each process step is ...

... robotics, biotechnology, and nanotechnology. We study the logical foundations of scalable systems beyond the scope of traditional testing or simulation, and we create and apply high-level tools for ...

New

next page

Showing results 1-20

Nano Robotics information

What is nano robotics?

Nano robotics refers to the branch of robotics that deals with the design, construction, and application of robots at the nanometer scale—typically measured in billionths of a meter. These tiny robots, often called nanobots, are engineered to perform specific tasks at the molecular or cellular level, such as targeted drug delivery, medical diagnostics, or environmental monitoring. Nano robotics combines principles from nanotechnology, engineering, biology, and computer science to create innovative solutions for healthcare, manufacturing, and research. The field is rapidly evolving, with ongoing advancements in materials science and miniaturization enabling new applications.

What are the key skills and qualifications needed to thrive as a nano robotics engineer?

To thrive as a Nano Robotics Engineer, you need a solid background in nanotechnology, robotics, mechanical or electrical engineering, and often an advanced degree in a relevant scientific field. Proficiency with CAD software, microfabrication tools, simulation platforms, and familiarity with cleanroom protocols are typically required, along with certifications in nanotechnology or robotics. Strong problem-solving abilities, attention to detail, and effective teamwork and communication skills set top candidates apart. These competencies are vital for designing, building, and operating nanoscale robotic systems that demand precision, innovation, and cross-disciplinary collaboration.

What are some common challenges faced by professionals working in nano robotics, and how can they be addressed?

Professionals in nano robotics often encounter challenges such as integrating nanoscale components with larger systems, ensuring precise control at the nano level, and maintaining reliability in diverse environments. Collaboration with interdisciplinary teams—such as materials scientists, electrical engineers, and biologists—is essential to solve complex problems and innovate effective solutions. Staying updated with advancements in nanofabrication and micro-electromechanical systems (MEMS) also helps professionals address technical hurdles. Regular communication and teamwork foster a creative environment that can overcome these unique challenges.

What is the difference between Nano Robotics vs Microfabrication Engineer?

AspectNano RoboticsMicrofabrication Engineer
Required CredentialsBachelor's or higher in Engineering, Nanotechnology, or related fields; certifications in robotics or nanotechBachelor's or higher in Materials Science, Electrical Engineering, or related fields; certifications in microfabrication processes
Work EnvironmentResearch labs, manufacturing facilities, R&D centers focused on nanoscale devicesCleanrooms, semiconductor fabs, microfabrication labs
Industry UsageNanotechnology, robotics, biomedical devicesSemiconductor industry, microelectronics, MEMS devices

Nano Robotics involves designing and developing nanoscale robotic systems, often integrating robotics with nanotechnology. Microfabrication Engineers focus on creating micro-scale devices using specialized fabrication techniques. While both roles require knowledge of nanotech and cleanroom environments, Nano Robotics emphasizes robotic systems at the nanoscale, whereas Microfabrication Engineers specialize in manufacturing micro-scale components. Both careers are vital in advancing nanotech applications but serve different technical focuses.

What cities in California are hiring for Nano Robotics jobs? Cities in California with the most Nano Robotics job openings:
Infographic showing various Nano Robotics job openings in California as of August 2026, with employment types broken down into 90% Full Time, 5% Part Time, 4% Contract, and 1% Nights. Highlights an 93% Physical, 1% Hybrid, and 6% Remote job distribution.

Lead Carbon Nanomaterials Engineer

Arcturus

Los Angeles, CA • On-site

$110K - $145K/yr

Full-time

Re-posted 28 days ago


Job description

Lead Nanomaterials Engineer

Los Angeles, CA (in-person)

About Arcturus

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.

Why you should join us

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.

Purpose

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.

The role

This role reports directly to the CEO

Materials strategy and integration

  • Own the nanomaterials roadmap R&D, including carbon nanomaterial selection, orientation morphology, purity, infusion percentages, functionalizations, etc.

  • Define integration approaches into aluminum and copper that improve electrical performance through process technology

  • Lead dispersion and interface engineering strategy, including verification methods and technical decision gates

Characterization and scientific rigor

  • Build the characterization stack that links structure to performance, including Raman, SEM/EDS, and other methods as needed

  • Define metrics for dispersion quality, interface integrity, and degradation, then standardize how those measurements are made

  • Partner with engineering to translate scientific results into material specs, process windows, and acceptance criteria

Reliability and durability

  • Own hypotheses and experiments for long-term stability, including thermal cycling, corrosion, oxidation, environmental exposure, and processing effects

  • Define accelerated aging and failure mode discovery plans aligned with real-world use cases

  • Leadership and driving IP disclosures. Help shape patent strategy

  • Help build and lead a small but world-class scientific team over time

Basic qualifications

  • PhD or MS in materials science, chemistry, chemical engineering, physics, or a related field

  • 8+ years of applied research leadership with demonstrated impact on products, processes, or commercialization

  • Deep expertise in carbon nanomaterials and strong intuition for process-structure-property relationships

  • Strong scientific writing skills, including clear technical documentation, experimental plans, and invention disclosures

Preferred qualifications

  • Experience with carbon nanomaterial-metal composites, metal matrix composites, covetics, or carbon/metal interface chemistry

  • Familiarity with graphene, carbon nanotubes, graphene growth methods, including localized or laser-inducted graphene

  • Startup experience

What we offer

  • Competitive cash compensation and meaningful equity

  • Scientific ownership with direct product impact

  • The chance to define the playbook for nanomaterial-enhanced conductors

  • Relocation support for candidates moving from outside the Los Angeles area

  • Visa sponsorship for highly qualified candidates (H-1B transfers, F-1, or STEM OTP)