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Phd Materials Science Jobs in Colorado (NOW HIRING)

PhD in Materials Science, Chemistry, Chemical Engineering, Physics or a closely related field. * Experience : 5-10 years of industry experience in coating development, materials engineering, or ...

Senior Manager, Engineering

Englewood, CO ยท On-site

$165K - $195K/yr

Bachelor's degree in Mechanical Engineering, Materials Science, or related field (Master's or PhD preferred) * 10+ years of experience in power transmission systems, mechanical design, or advanced ...

Preferred Qualifications MS or PhD in Mechanical Engineering, Audio/Acoustic Engineering, Electrical Engineering, Materials Science preferred. Experience with transducer design and testing (from ...

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Phd Materials Science information

See Colorado salary details

$55.7K

$130.4K

$181.9K

How much do phd materials science jobs pay per year?

As of Aug 21, 2026, the average yearly pay for phd materials science in Colorado is $130,360.00, according to ZipRecruiter salary data. Most workers in this role earn between $98,300.00 and $175,600.00 per year, depending on experience, location, and employer.

What is a PhD in materials science?

A PhD in Materials Science is an advanced research degree focused on the study of the properties, structure, performance, and applications of materials such as metals, polymers, ceramics, and composites. Students in this program conduct original research to develop new materials or improve existing ones for use in various industries, including electronics, aerospace, energy, and healthcare. Graduates often pursue careers in academia, research institutions, or industry, where they contribute to innovations in technology and manufacturing.

What are the key skills and qualifications needed to thrive as a PhD in materials science?

To thrive as a PhD in Materials Science, you need advanced knowledge in physics, chemistry, and engineering principles, along with a doctoral degree in the field. Expertise in analytical techniques (like SEM, TEM, XRD), materials characterization tools, and proficiency in scientific programming or data analysis software are commonly required. Strong problem-solving abilities, collaboration, and effective scientific communication help researchers excel and drive innovation. These skills enable the development of new materials and technologies, essential for progress across industries such as electronics, energy, and manufacturing.

What are some common challenges faced by PhD holders in materials science when transitioning from academia to industry roles?

PhD holders in Materials Science may encounter challenges such as adapting to faster-paced project timelines, learning to prioritize commercially viable outcomes over purely theoretical research, and collaborating with cross-functional teams from engineering, manufacturing, and business. Industry roles often require clear communication of complex findings to non-specialists and adjusting to structured project management systems. However, these challenges also offer opportunities for professional growth, broader impact, and the chance to see research translated into real-world products.

What is the difference between Phd Materials Science vs Materials Engineer?

AspectPhd Materials ScienceMaterials Engineer
Required CredentialsPhD in Materials Science or related fieldBachelor's or Master's in Materials Science or Engineering
Work EnvironmentResearch labs, academia, R&D departmentsManufacturing, product development, industry labs
Employer & Industry UsageUniversities, research institutions, advanced R&DManufacturers, aerospace, automotive, electronics
Common Search & Comparison IntentUnderstanding academic vs industry roles, research focusPractical application, product development, industry roles

The main difference between Phd Materials Science and Materials Engineer lies in their focus and work environment. PhD holders typically engage in research, academia, and advanced R&D, while Materials Engineers focus on applying materials knowledge in manufacturing and product development within industry settings.

What are popular job titles related to Phd Materials Science jobs in Colorado?

For Phd Materials Science jobs in Colorado, the most frequently searched job titles are:

What job categories do people searching Phd Materials Science jobs in Colorado look for?

The top searched job categories for Phd Materials Science jobs in Colorado are:

What cities in Colorado are hiring for Phd Materials Science jobs?

Cities in Colorado with the most Phd Materials Science job openings:

Infographic showing various Phd Materials Science job openings in Colorado as of August 2026, with employment types broken down into 93% Full Time, 5% Part Time, and 2% Contract. Highlights an 95% In-person, 2% Hybrid, and 3% Remote job distribution, with an average salary of $130,360 per year, or $62.7 per hour.

Optical Coatings Materials Scientist

Fusion Energy Base

Denver, CO โ€ข On-site

$140 - $170/hr

Other

Medical, Dental, Vision, Life, Retirement, PTO

Posted 16 days ago


Job description

Optical Coatings Materials Scientist
Denver, CO
Engineering โ€“ Materials and Process Engineering
/Full-Time /On-site

Xcimer Energy leverages decades of research in inertial fusion energy (IFE) combined with innovative engineering and manufacturing approaches. Our mission is to deploy fusion power plants at scale to meet global decarbonization goals. Xcimer has assembled a team of leaders across fusion science, materials, and manufacturing with a strong track record of execution. Backed by leading investors, Xcimer is uniquely positioned to deliver clean, reliable fusion energy. This is a full-time, onsite role based at our headquarters in Denver, CO. As a Optical Coatings Materials Scientist in the Materials & Process Engineering (M&P) Department, you will work closely with the optical and laser systems teams to develop and implement advanced coatings and material solutions for fluorine-resistant environments. This role is handsโ€‘on and executionโ€‘driven, spanning coating development, materials characterization, and scaleโ€‘up to productionโ€‘relevant processes. You will play a critical role in enabling durable optical performance and system reliability in aggressive chemical environments, directly impacting the core performance of Xcimerโ€™s fusion systems.

Responsibilities
  • Develop and optimize fluorineโ€‘resistant optical coatings for laserโ€‘facing components, including mirrors, windows, and diagnostic optics.
  • Design and evaluate fluorineโ€‘compatible material systems for broader system applications (e.g., chambers, fixtures, and exposed hardware).
  • Work closely with the optics and laser engineering teams to define coating requirements, performance targets, and integration constraints.
  • Lead handsโ€‘on coating deposition efforts, including thin film development, process tuning, and substrate preparation.
  • Design and execute test plans and Design of Experiments (DOE) to evaluate coating adhesion, durability, chemical resistance, and optical performance.
  • Perform detailed materials and coating characterization, including microstructural, compositional, and optical property analysis.
  • Analyze failure modes (e.g., delamination, degradation under fluorine exposure) and drive root cause investigations and corrective actions.
  • Develop and document coating processes, specifications, and qualification procedures.
  • Collaborate with internal teams and external vendors to scale coating processes from lab development to pilot and highโ€‘volume manufacturing.
  • Support integration of coatings into system hardware, including validation under relevant operating conditions.
  • Contribute to the development of experimental infrastructure and coating test platforms within M&P.
Qualifications
  • Education: PhD in Materials Science, Chemistry, Chemical Engineering, Physics or a closely related field.
  • Experience: 5โ€“10 years of industry experience in coating development, materials engineering, or related fields.
  • Demonstrated experience developing optical coatings and/or protective coatings for harsh environments.
  • Strong understanding of: Thin film deposition processes (e.g., PVD, CVD, IBS, ALD, sputtering, evaporation, plasmaโ€‘based methods) Coating adhesion, stress, and durability mechanisms Optical coating performance (reflectivity, absorption, damage thresholds)
  • Handsโ€‘on experience with coating fabrication and processing.
  • Handsโ€‘on expertise with materials and coating characterization tools, including: Scanning Electron Microscopy (SEM) Transmission Electron Microscopy (TEM) Energy Dispersive Xโ€‘ray Spectroscopy (EDS/EDX) Xโ€‘ray Diffraction (XRD) Optical microscopy and profilometry Surface analysis and coating thickness/roughness measurements
  • Strong ability to correlate microstructure, composition, and processing conditions to coating performance.
  • Experience designing and executing DOE and structured experiments.
  • Ability to independently troubleshoot complex materials and coating failures.
  • Comfortable working in a fastโ€‘paced, multidisciplinary, hardwareโ€‘focused environment.
  • Executionโ€‘focused mindset with the ability to move quickly from concept to validation.
  • Strong collaborator, able to work across optics, materials, and system teams
  • Strong data analysis skills and familiarity with statistical methods.
  • Experience writing technical reports, specifications, and documentation.
  • Must be a U.S. citizen or national, U.S. permanent resident (current Green Card holder), or lawfully admitted into the U.S. as a refugee or granted asylum.
  • Desired Experience developing coatings for chemically aggressive environments, particularly fluorine or halogen chemistries.
  • Background in laser optics, optical coatings, or highโ€‘energy laser systems.
  • Experience transitioning coatings from R&D to pilot or highโ€‘volume manufacturing.
  • Familiarity with scaling coating processes for industrial production.
  • Experience working with external coating vendors or contract manufacturers.
  • Knowledge of coating durability testing standards (thermal cycling, chemical exposure, laser damage).
  • Experience in systemโ€‘level integration of coatings into hardware environments.
  • Highly handsโ€‘on and experimental, comfortable working in lab and hardware environments.

$140,000 - $170,000 a year

Candidates may be considered for other positions at Xcimer Energy, and our actual base salary will be determined on an individual basis and may vary based on jobโ€‘related knowledge and skills, education, and experience. The range is published in accordance with Colorado Equal Pay for Equal Work Act and California Equal Pay Act.

Equal Employment Opportunity

Xcimer Energy is proud to be an Equal Opportunity/Affirmative Action Employer and is committed to attracting, retaining, and developing a highly qualified, diverse, and dedicated work force.

Xcimer Energy hires and promotes people on the basis of their qualifications, performance, and abilities.

We support the establishment and maintenance of a workplace that fosters trust, equality, and teamwork, in which all employees recognize and appreciate the diversity of individual team members.

We provide all qualified applicants for employment and employees with equal opportunities for hire, promotion, and other terms and conditions of employment, regardless of their race, color, religion, gender, sexual orientation, gender identity, national origin/ethnicity, age, physical or mental disability, genetic factors, military/veteran status, or any other status or characteristic protected by federal, state, and/or local law.

Xcimer Energy will consider for employment qualified applicants with criminal histories in a manner consistent with applicable federal, state, and local laws.

For more information on โ€œEEO Is the Law,โ€ please see here and here.

Benefits
  • medical, dental, and vision coverage
  • basic and supplemental life insurance
  • shortโ€‘and longโ€‘term disability
  • paid parental leave for employees at the time of birth or adoption
  • a 401(k) with a company match of up to 6%
  • Eligible employees also receive equity, allowing them to share in the companyโ€™s longโ€‘term success.
  • Xcimer operates under a flexible Paid Time Off (ATO) approach.
  • Rather than a fixed number of vacation days, employees are trusted to take the time they need to rest and recharge while meeting the expectations of their role and team.
  • In addition, employees receive paid sick time, 13 companyโ€‘paid holidays, and an annual paid company shutdown.

We may use artificial intelligence (AI) tools to support parts of the hiring process, such as reviewing applications, analyzing resumes, or assessing responses and identifying potential inconsistencies or verification signals in application materials based on available information. These tools assist our recruitment team but do not replace human judgment. Final hiring decisions are ultimately made by humans. If you would like more information about how your data is processed, please contact us.

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