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Research Scientist Optoelectronics Jobs (NOW HIRING)

R&D Engineer - VCSEL

Sherman, TX · Hybrid

$130K - $155K/yr

... R&D Engineer - VCSEL Development is a highly technical semiconductor laser design role focused on ... Science, or related technical discipline * Minimum 5+ years of optoelectronic device development ...

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How much do research scientist optoelectronics jobs pay per year?

As of Jun 11, 2026, the average yearly pay for research scientist optoelectronics in the United States is $130,117.00, according to ZipRecruiter salary data. Most workers in this role earn between $107,500.00 and $173,000.00 per year, depending on experience, location, and employer.

What is the difference between Research Scientist Optoelectronics vs Research Engineer Optoelectronics?

AspectResearch Scientist OptoelectronicsResearch Engineer Optoelectronics
CredentialsTypically requires a PhD in physics, electrical engineering, or related fieldsUsually holds a Master's or Bachelor's degree in engineering or related disciplines
Work EnvironmentFocuses on fundamental research, experiments, and developing new technologiesEmphasizes applied research, prototype development, and product testing
Employer & Industry UsageCommonly employed in academia, research labs, and R&D departments of tech companiesOften found in industry R&D, manufacturing, and product development teams

Research Scientist Optoelectronics primarily conducts fundamental research and develops new technologies, often requiring a PhD. In contrast, Research Engineers focus on applying research to develop prototypes and products, typically holding a Master's or Bachelor's degree. Both roles are vital in advancing optoelectronic technologies but differ in their focus and work environment.

What is a Research Scientist in Optoelectronics?

A Research Scientist in Optoelectronics is a professional who studies and develops technologies that use the interaction between light and electronic devices. Their work often involves designing, testing, and improving components like lasers, LEDs, photodetectors, and optical fibers. These scientists contribute to advancements in fields such as telecommunications, medical devices, and renewable energy. They typically work in research labs, universities, or high-tech industries, focusing on both fundamental research and practical applications.

What are some common challenges faced by Research Scientists in Optoelectronics when transitioning projects from the lab to commercial applications?

Research Scientists in Optoelectronics frequently encounter challenges when moving projects from the lab to commercial products, such as scaling up fabrication processes, ensuring consistent device performance, and meeting industry standards for reliability. Collaborating closely with multidisciplinary teams—including engineers, manufacturers, and quality assurance professionals—is essential to address these issues. Additionally, scientists must stay current with rapid technological advancements and adapt their research to align with market demands, making flexibility and strong communication skills crucial in this role.

What are the key skills and qualifications needed to thrive as a Research Scientist in Optoelectronics, and why are they important?

To thrive as a Research Scientist in Optoelectronics, you need advanced knowledge in physics, materials science, and electronic engineering, typically supported by a PhD or master's degree in a relevant field. Experience with simulation software, photonic measurement systems, and fabrication tools, as well as familiarity with laboratory safety and data analysis tools, is essential. Strong analytical thinking, problem-solving abilities, and effective communication skills help you collaborate with multidisciplinary teams and present complex findings. These skills and qualities are crucial for driving innovation, ensuring experimental accuracy, and successfully advancing optoelectronic technologies.
Infographic showing various Research Scientist Optoelectronics job openings in the United States as of June 2026, with employment types broken down into 6% As Needed, 29% Full Time, and 65% Part Time. Highlights an 89% Physical, 3% Hybrid, and 8% Remote job distribution, with an average salary of $130,117 per year, or $62.6 per hour.
Postdoctoral Researcher-Photoelectrocatalysis

Postdoctoral Researcher-Photoelectrocatalysis

The National Renewable Energy Laboratory (NREL)

Golden, CO • On-site

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Posted 4 days ago


Job description

Posting Title
Postdoctoral Researcher-Photoelectrocatalysis
Location
CO - Golden
Position Type
Postdoc (Fixed Term)
Hours Per Week
40
Working at NLR
NLR is located at the foothills of the Rocky Mountains in Golden, Colorado is the nation's primary laboratory for energy systems research and development.
Join the National Laboratory of the Rockies (NLR), where world-class scientists, engineers, and experts are accelerating energy innovation through breakthrough research and systems integration. From our mission to our collaborative culture, NLR stands out in the research community for its commitment to an affordable and secure energy future. Spanning foundational science to applied systems engineering and analysis, we focus on solving complex challenges to deliver advanced, secure, reliable, and cost-effective energy solutions. Our work helps strengthen U.S. industries, support job creation, and promote national economic growth.
At NLR, you'll find a mission-driven environment supported by state-of-the-art facilities, multidisciplinary research teams, and strong collaborations with industry, academia, and other national laboratories. We offer robust professional development opportunities, and a competitive benefits package designed to support your career and well-being.
Job Description
The Materials, Chemical, and Computational Sciences Directorate has an opening for a postdoctoral researcher to support the next generation of photo(electro)catalysis research.
This project will be focused on understanding the fundamentals of photo(electro)chemical transformations - such as the hydrogen evolution reaction (HER), CO2 reduction reaction (CO2RR), or nitrate reduction reaction (NO3RR) - using emerging inorganic semiconductor materials in thin-film configurations. This position will be supported by DOE Basic Energy Science Programs funded at NLR.
The position will involve characterization of novel semiconductor materials and architectures as photoelectrodes to identify defects, probe reaction mechanisms, and tune optoelectronic and catalytic properties. Potential strategies for tuning the resulting properties will require experience with chemical treatments/additives, atomic or molecular doping, surface functionalization, and/or strain engineering. To understand the impact of these manipulations on catalytically active semiconductor systems, the candidate will be engaged in team science that leverages in situ steady-state (UV-vis, IR, Raman, PL) and time-resolved (IR, transient absorption) spectroscopies, microscopy (Confocal Raman/PL, AFM), and product detection (mass spectrometry, gas chromatography) tools to probe the fundamental optoelectronic properties, reaction mechanisms, and material stability/durability. The successful candidate should therefore have experience in one or more of these characterization techniques and have a passion for devising experiments to deeply understand systems, not optimize them for performance.
The successful applicant will be invested in working in a cross-disciplinary team of material scientists, chemists, spectroscopists, and theorists to probe and understand surfaces, interfaces, and durability of newly developed chemistries and architectures. They should have proven expertise in data analysis, experimental design, presentations, and writing of manuscripts. The initial appointment is for 1 year with extension of up to 3 years total preferred, provided mutual satisfaction and availability of funds.
Please include a cover letter to complete your application.
Basic Qualifications
Must be a recent PhD graduate within the last three years.
* Must meet educational requirements prior to employment start date.
Additional Required Qualifications
  • PhD in Chemistry, Material Science, Physics, Electrical Engineering, Chemical Engineering, or related fields.
  • Established track record in scientific writing, presentation, publication, and communication.

Preferred Qualifications
Candidates should have direct experience in one or more of the following areas:
  • Photoelectrocatalysis, electrocatalysis, or photocatalysis, particularly for fuel-forming reactions such as CO2R, NO3RR, HER, or OER
  • Spectroscopic or other characterization of (photo/electro)catalysts and/or modified materials surfaces
  • Strategies for establishing the stability of new materials exposed to electrolyte and during catalytic operation
  • Semiconductor device physics
  • Characterization of the optoelectronic properties of semiconductors

Additional experience in semiconductor photoelectrochemistry, spectro-electrochemistry, thin film or nanoparticle synthesis and surface modification, and other interfacial characterization techniques would be a benefit.
Job Application Submission Window
The anticipated closing window for application submission is up to 30 days and may be extended as needed.
Annual Salary Range (based on full-time 40 hours per week)
Job Profile: Postdoctoral Researcher / Annual Salary Range: $76,600 - $126,400
NLR takes into consideration a candidate's education, training, and experience, expected quality and quantity of work, required travel (if any), external market and internal value, including seniority and merit systems, and internal pay alignment when determining the salary level for potential new employees. In compliance with the Colorado Equal Pay for Equal Work Act, a potential new employee's salary history will not be used in compensation decisions.
Benefits Summary
Benefits include medical, dental, and vision insurance; short-term disability insurance*; pension benefits*; 403(b) Employee Savings Plan with employer match*; life and accidental death and dismemberment (AD&D) insurance; personal time off (PTO) and sick leave; and paid holidays. NLR employees may be eligible for, but are not guaranteed, performance-, merit-, and achievement- based awards that include a monetary component. Some positions may be eligible for relocation expense reimbursement.
* Based on eligibility rules
Badging Requirement
NLR is subject to Department of Energy (DOE) access restrictions. All employees must also be able to obtain and maintain a federal Personal Identity Verification (PIV) card as required by Homeland Security Presidential Directive 12 (HSPD-12), which includes a favorable background investigation.
Drug Free Workplace
NLR is committed to maintaining a drug-free workplace in accordance with the federal Drug-Free Workplace Act and complies with federal laws prohibiting the possession and use of illegal drugs. Under federal law, marijuana remains an illegal drug.
If you are offered employment at NLR, you must pass a pre-employment drug test prior to commencing employment. Unless prohibited by state or local law, the pre-employment drug test will include marijuana. If you test positive on the pre-employment drug test, your offer of employment may be withdrawn.
Submission Guidelines
Please note that in order to be considered an applicant for any position at NLR you must submit an application form for each position for which you believe you are qualified. Applications are not kept on file for future positions. Please include a cover letter and resume with each position application.
Equal Opportunity Employer
All qualified applicants will receive consideration for employment without regard basis of age (40 and over), color, disability, gender identity, genetic information, marital status, domestic partner status, military or veteran status, national origin/ancestry, race, religion, creed, sex (including pregnancy, childbirth, breastfeeding), sexual orientation, and any other applicable status protected by federal, state, or local laws.
Reasonable Accommodations
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