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Thin-Film PV Materials Scientist - Space Solar

Starpath · Hawthorne, CAtodayverified 1 h ago

MS-level R&D / Research roles on Crosslinked list a median of $132k (62 that show pay). This posting does not list pay.

Own perovskite solar cell materials and process chemistry, from precursor formulation to deposition and encapsulation.

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Worth knowing

Why it is interesting. Rare chance to engineer perovskite PV for space radiation and thermal extremes, with in-house encapsulation integration.

Might not be for you. Heavy emphasis on device-level yield and stability troubleshooting rather than open-ended materials discovery.

Mostly at the benchDeep specialist PhD-friendlyFirst industry role Written with care

Adjacent materials roleDevelop and optimize precursor formulations and solution-processed deposition routes for perovskite solar cells, including film growth

Seniority
Mid-level
Work
On-site
Type
Full-time
Degree
MS
Industry
Energy
Role
R&D / Research
Materials
perovskite7 rolesthin-film photovoltaic materials1 rolecharge transport materialsencapsulation polymers

Role details

Position Details

  • Location: Los Angeles (Hawthorne), CA
  • Employment Type: Full-time
  • Department: Starlight Solar
  • Travel: Occasional

The Mission

Starpath develops and manufactures the technologies that will enable humans to live on the Moon and Mars. Today, we are building robotic systems that locally produce the essential commodities a lunar civilization will require at extreme scale: water, power, and oxygen. Our ultimate goal is to build and operate a self-sustaining city on Mars.

Thin-Film PV Materials Scientist – Space Solar

The Starlight team is focused on dramatically improving space solar power to support Starpath's core mission and the greater space economy. Starlight manufactures the lowest cost and highest performance space solar ever, which will power the majority of new satellites built on Earth and all of Starpath's equipment on the Moon and Mars.

As a Thin-Film PV Materials Scientist on the Starlight team, you will own the materials and process chemistry behind our perovskite solar cells. You'll drive the chemistry decisions that determine cell efficiency, yield, environmental stability, and lifetime in space — from precursor formulation through deposition, interface engineering, and integration with encapsulation.

Responsibilities

  • Develop and optimize precursor formulations and solution-processed deposition routes for perovskite solar cells, including film growth, post-treatment, and process scaling
  • Engineer charge transport layers, interfaces, and contact stacks to maximize cell efficiency and operational stability
  • Drive root-cause investigations on yield, efficiency, and degradation issues — connecting chemistry to electrical and optical performance
  • Develop environmental stability strategies — moisture, oxygen, thermal, UV, and radiation tolerance — and partner with the polymer/encapsulation team on integration
  • Characterize materials, interfaces, and devices using techniques such as XRD, XPS, photoluminescence, and IV/EQE
  • Translate bench chemistry into stable, reproducible, high-yield processes in partnership with manufacturing engineering
  • Push back on unnecessary complexity — simplify chemistries, reduce process steps, and cut overhead wherever it doesn't add value

Required Qualifications

  • Master's or PhD in chemistry, materials science, chemical engineering, applied physics, or a related discipline
  • Graduate research experience with perovskite, thin-film photovoltaic, or related optoelectronic materials
  • Demonstrated ability to connect materials chemistry to device performance through characterization and analysis

Preferred Qualifications

  • PhD in a relevant discipline with a research focus on perovskite photovoltaics
  • Direct experience with solution-processed deposition methods — spin coating, blade coating, slot-die coating, or vapor-assisted deposition
  • Hands-on experience with precursor formulation, solvent engineering, and additive optimization
  • Familiarity with charge transport materials, interface passivation, and contact stack engineering
  • Experience scaling perovskite chemistry from research scale to larger-area or pilot manufacturing
  • Knowledge of perovskite degradation mechanisms and stability strategies (moisture, oxygen, thermal, UV, radiation)
  • Familiarity with glovebox and cleanroom operations, chemical safety, and contamination control
  • Exposure to aerospace, space, or other high-reliability hardware environments

EAR Requirements

  • To conform to U.S. Government export regulations, you must be a (i) U.S. citizen or national, (ii) U.S. lawful, permanent resident (aka green card holder), (iii) Refugee under 8 U.S.C.
  • 1157, or (iv) Asylee under 8 U.S.C.
  • 1158, or be eligible to obtain the required authorizations from the U.S. Department of State.

Equal Opportunity

  • Starpath is an equal opportunity employer. We celebrate diversity and are committed to creating an inclusive environment for all employees.

Benefits

At Starpath Robotics, base pay is just one part of your total rewards package. We also offer:

  • Generous benefits including health, dental, vision, and retirement plans.
  • Paid time off, holidays, and flexible policies to support balance.
  • Professional growth opportunities through training and development.
  • The chance to own high-impact work that directly shapes the future of robotics & space!
  • A collaborative, mission-driven culture where craftsmanship and innovation are celebrated.

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Common questions

Where is the Thin-Film PV Materials Scientist - Space Solar role at Starpath based?

This role is based in Hawthorne, CA.

What degree is required for the Thin-Film PV Materials Scientist - Space Solar role at Starpath?

This role requires a MS.

What polymers or materials does this Thin-Film PV Materials Scientist - Space Solar role work with?

perovskite, thin-film photovoltaic materials.

What techniques or methods are required for this Thin-Film PV Materials Scientist - Space Solar role?

XRD, XPS, photoluminescence, IV/EQE.