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Research Scientist I/II, Computational Organic Electronics

Lila Sciences · Cambridge, MA1mo agoverified 20 h ago
$176k – $304kfrom the posting

PhD-level R&D / Research roles on Crosslinked list a median of $131k (116 that show pay).

Apply first-principles modeling, atomistic simulation and AI to design organic electronic and polymeric materials

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Worth knowing

Why it is interesting. Sits at the junction of first-principles simulation, agentic AI and autonomous Science Factory instruments — rare blend of computational materials and AI infrastructure.

Might not be for you. Fully computational — no bench or synthesis work, and the AI/agentic-workflow component is central rather than optional.

Computational or deskDeep specialistFast-paced PhD-friendlyFirst industry role

Adjacent materials roleorganic semiconductors, photovoltaic materials, molecular and polymeric electronic materials; morphology-property relationships; charge transport

H-1B filings

Lila Sciences filed 4 H-1B labor applications for scientist and engineer roles from Jan to Dec 2025.

Most common titles: Senior Engineer II, Controls, Senior Engineer II, Automation, Research Associate II. Median filed pay: $145K a year.

From U.S. Department of Labor disclosure data. A filing is a record of past hiring, not a promise about this role, so confirm sponsorship with the employer. Titles and filed pay ·Every employer's filings

Seniority
Entry level
Work
On-site
Type
Full-time
Degree
PhD
Industry
Electronics
Role
R&D / Research
Materials
organic semiconductors3 rolespolymeric electronic materialsorganic photovoltaic materials1 roleperovskite-organic interfacesmolecular electronics
Techniques
electronic structure methodsatomistic/molecular simulationcharge transport modelingexcited-state calculationscoarse-graining

Role details

Your Impact at LILA

Your role will involve applying computational methods and AI to accelerate the discovery and design of organic electronics materials. You will use first-principles modeling, atomistic simulations, scientific machine learning, and agentic AI systems to investigate structure-property relationships in organic and hybrid materials relevant to photovoltaics, semiconductors, optoelectronics, or electronic devices.

You will work at the intersection of physics-based simulation, AI/ML, and autonomous scientific workflows. The focus is on using computational insight to identify promising materials, explain structure-property relationships, guide optimization, and help agents reason over simulation and experimental data in scientifically grounded ways.

This is a hands-on research role for someone who can connect deep organic electronics and computational materials expertise with practical impact for customer-facing scientific programs. You will collaborate with computational scientists, AI researchers, software engineers, and experimental teams to turn simulations, models, and scientific reasoning into actionable hypotheses and discovery workflows.

What You'll Be Building

  • Apply computational modeling and AI for materials discovery and design of organic semiconductors, photovoltaic materials, molecular and polymeric electronic materials, and organic electronic devices.
  • Model charge transport, excited-state behavior, morphology-property relationships, and other fundamental mechanisms that influence organic electronic device performance.
  • Connect simulation outputs to experimental observations and develop workflows that close the loop between computation and experiment.
  • Build predictive models from computational and experimental data to guide materials selection and optimization.
  • Analyze simulation and experimental data to generate actionable materials hypotheses.
  • Partner with ML, software, and experimental teams on discovery workflows.
  • Communicate physical insights, model limitations, and recommendations to collaborators.

What You'll Need to Succeed

  • PhD or equivalent experience in Materials Science, Chemistry, Chemical Engineering, Mechanical Engineering, Physics, or a related field.
  • Strong foundation in computational materials science and chemistry, including electronic structure methods and large-scale atomistic simulations.
  • Deep understanding of organic semiconductors, organic electronics, photovoltaics, optoelectronic materials, charge transport, or related device-relevant materials systems.
  • Experience applying first-principles, molecular simulations, or general atomistic methods to materials discovery, optimization, or understanding.
  • Ability to connect molecular, morphological, and electronic structure features to device-relevant properties.
  • Strong programming skills in Python and scientific computing workflows.

Bonus Points For

  • Experience studying organic photovoltaics, organic semiconductors, polymer electronics, molecular electronics, perovskite-organic interfaces, or related materials systems.
  • Experience applying AI/ML to computational materials science, molecular simulations, or other physics-based simulations.
  • Strong familiarity with agentic AI systems, autonomous scientific workflows, or simulation-aware agents.
  • Experience integrating computational predictions with experimental characterization, device measurements, or closed-loop optimization workflows.
  • Familiarity with charge transport modeling, excited-state calculations, morphology generation, coarse-graining, and/or multiscale and multiphysics simulations.
  • Ability to communicate physical insight, uncertainty, and model limitations to cross-functional collaborators.

About LILA

Lila Sciences is building Scientific Superintelligence™ to solve humankind's greatest challenges. We believe science is the most inspiring frontier for AI. Rather than hard-coding expert knowledge into tools, LILA builds systems that can learn for themselves.

LILA combines advanced AI models with proprietary AI Science Factory™ instruments into an operating system for science that executes the entire scientific method autonomously, accelerating discovery at unprecedented speed, scale, and impact across medicine, materials, and energy. Learn more at www.lila.ai.

Guided by our core values of truth, trust, curiosity, grit, and velocity, we move with startup speed while tackling problems of historic importance. If this sounds like an environment you'd love to work in, even if you don't meet every qualification listed above, we encourage you to apply.

We're All In

Lila Sciences is committed to equal employment opportunity regardless of race, color, ancestry, religion, sex, national origin, sexual orientation, age, citizenship, marital status, disability, gender identity or Veteran status.

Information you provide during your application process will be handled in accordance with our Candidate Privacy Policy.

A Note to Agencies

*Lila Sciences does not accept unsolicited resumes from any source other than candidates. The submission of unsolicited resumes by recruitment or staffing agencies to Lila Sciences or its employees is strictly prohibited unless contacted directly by Lila Science's internal Talent Acquisition team. Any resume submitted by an agency in the absence of a signed agreement will automatically become the property of Lila Sciences, and Lila Sciences will not owe any referral or other fees with respect thereto.*

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Common questions

What is the salary for the Research Scientist I/II, Computational Organic Electronics role at Lila Sciences?

The listed annual base salary range is $176K–$304K. This figure is taken from the posting itself.

Does Lila Sciences sponsor H-1B visas?

Lila Sciences has filed H-1B petitions with the US Department of Labor in past years, but this specific posting does not explicitly mention sponsorship for the Research Scientist I/II, Computational Organic Electronics role. Confirm with the employer before applying if visa support is required.

Where is the Research Scientist I/II, Computational Organic Electronics role at Lila Sciences based?

This role is based in Cambridge, MA.

What degree is required for the Research Scientist I/II, Computational Organic Electronics role at Lila Sciences?

This role requires a PhD.

What polymers or materials does this Research Scientist I/II, Computational Organic Electronics role work with?

organic semiconductors, polymeric electronic materials, organic photovoltaic materials.

What techniques or methods are required for this Research Scientist I/II, Computational Organic Electronics role?

electronic structure methods, atomistic/molecular simulation.