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Ceramic Chemistry Jobs (NOW HIRING)

NY · On-site

$100 - $125/hr

This role requires strong knowledge of ceramic materials, ceramic chemistry, coating architectures, high-temperature alloy systems, and degradation mechanisms in extreme environments. The successful ...

Principal Chemist

Loveland, OH · On-site

$150 - $200/hr

Ph.D. orMaster'sdegree in Polymer Chemistry, Ceramic Engineering, Materials Science, or Colloid Science. * Experience:Binder, Resin, UV photopolymer, long and short chain polymerexpertise, mfg. ...

New

Principal Chemist

Cincinnati, OH · On-site

$150 - $200/hr

Ph.D. orMaster'sdegree in Polymer Chemistry, Ceramic Engineering, Materials Science, or Colloid Science. * Experience:Binder, Resin, UV photopolymer, long and short chain polymerexpertise, mfg. ...

New

$150 - $200/hr

Ph.D. orMaster'sdegree in Polymer Chemistry, Ceramic Engineering, Materials Science, or Colloid Science. * Experience:Binder, Resin, UV photopolymer, long and short chain polymerexpertise, mfg. ...

New

D. or Master's degree in Polymer Chemistry, Ceramic Engineering, Materials Science, or Colloid Science. * Experience: Binder, Resin, UV photopolymer, long and short chain polymer expertise, mfg. ...

$60 - $80/hr

Ph.D. in Materials Science and Engineering, Ceramic Engineering, Physics, Chemistry, or a closely related discipline.* Strong experimental background in functional ceramic materials.* Excellent ...

D. in Materials Science and Engineering, Ceramic Engineering, Physics, Chemistry, or a closely related discipline. * Strong experimental background in functional ceramic materials. * Excellent ...

... glass, ceramic, and materials science. From the depths of the ocean to the farthest reaches of ... Chemistry provides hands on laboratory support for research and development projects in coating ...

Posted today

$150 - $200/hr

This role sits across projects rather than inside a single narrow chemistry: you will define the ... Design and execute synthesis routes for oxide and ceramic materials across a range of compositions ...

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Ceramic Chemistry information

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$9

$25

$55

How much do ceramic chemistry jobs pay per hour?

As of Sep 9, 2026, the average hourly pay for ceramic chemistry in the United States is $25.81, according to ZipRecruiter salary data. Most workers in this role earn between $15.14 and $30.05 per hour, depending on experience, location, and employer.

What is ceramic chemistry?

Ceramic chemistry is the study of the chemical composition, reactions, and properties of materials used in ceramics, such as clays, glazes, and pigments. Professionals in this field analyze how different raw materials interact during firing, how glazes form, and how changes in formulation can affect color, texture, and durability. Understanding ceramic chemistry is essential for creating functional and decorative ceramic products, troubleshooting defects, and innovating new materials.

How does a ceramic chemist typically collaborate with production teams to ensure the quality and consistency of ceramic materials?

Ceramic chemists work closely with production teams by developing and testing ceramic compositions, troubleshooting issues in the manufacturing process, and advising on material adjustments to achieve desired properties. They often conduct quality control analyses and provide technical support to operators on the shop floor. Regular meetings and clear communication are essential to align laboratory findings with production realities, ensuring products meet both performance and safety standards.

What are the key skills and qualifications needed to thrive as a ceramic chemist, and why are they important?

To thrive as a Ceramic Chemist, you need a strong background in chemistry, materials science, and often a relevant degree such as a BS or MS in chemistry or materials engineering. Familiarity with laboratory instrumentation, analytical techniques (like XRD, SEM, or TGA), and quality control systems is typically required. Attention to detail, problem-solving skills, and effective communication are vital soft skills for collaborating with teams and troubleshooting material issues. Mastering these skills ensures the development of high-quality ceramic products and innovative material solutions in both research and manufacturing environments.

What is the difference between Ceramic Chemistry vs Materials Scientist?

AspectCeramic ChemistryMaterials Scientist
Required CredentialsBachelor's or higher in chemistry, materials science, or related field; often specialized in ceramicsBachelor's or higher in materials science, chemistry, or engineering; broader focus on various materials
Work EnvironmentLaboratories, manufacturing plants, research facilities focused on ceramics and inorganic materialsResearch labs, manufacturing, and development settings across multiple material types
Industry UsagePrimarily in ceramics, electronics, aerospace, and biomedical industriesWide-ranging industries including aerospace, automotive, electronics, and energy

While both roles involve materials analysis and research, Ceramic Chemistry specializes in inorganic, ceramic materials, whereas Materials Scientists work with a broader range of materials. Ceramic Chemists focus on ceramic properties, processing, and applications, making their expertise more niche within the materials science field.

What are some careers in ceramic chemistry?

Careers in ceramic chemistry include roles such as ceramic engineer, materials scientist, and research scientist, focusing on developing and improving ceramic materials for various applications. These positions often require knowledge of materials properties, high-temperature processes, and laboratory skills, with employment opportunities in manufacturing, research institutions, and industry R&D departments.

What jobs can I get with a ceramic chemistry degree?

A ceramic chemistry degree prepares individuals for roles such as ceramic engineer, materials scientist, or research scientist in industries like manufacturing, aerospace, and electronics. These jobs often require knowledge of materials properties, testing, and processing techniques, and may involve working in laboratories or production facilities.

What other helpful pages are available for Ceramic Chemistry?

Other pages related to Ceramic Chemistry:

Infographic showing various Ceramic Chemistry job openings in the United States as of September 2026, with employment types broken down into 97% Full Time, and 3% Part Time. Highlights an 97% In-person, and 3% Hybrid job distribution, with an average salary of $53,690 per year, or $25.8 per hour.

Research Scientist - Ceramist

NY • On-site

$100 - $125/hr

Other

Medical, Dental, Vision, Life, Retirement

Posted 12 days ago


Job description

Job Description Summary

As a Scientist specializing in advanced ceramic materials and coating systems, the successful candidate will contribute to research and development efforts focused on the design, optimization, and qualification of next-generation ceramic coatings, with emphasis on thermal barrier coating (TBC) systems. This role requires strong knowledge of ceramic materials, ceramic chemistry, coating architectures, high-temperature alloy systems, and degradation mechanisms in extreme environments. The successful candidate will work at the intersection of computational and experimental materials science to accelerate coating and alloy development through a combination of modeling, characterization, and laboratory-scale validation.

Job Description Key Responsibilities
  • Contribute to early-stage research and applied initiatives in advanced ceramic coating systems, including thermal barrier coatings (TBCs) and related protective coatings such as abradable, low-friction, wear-resistant, anti-corrosion, and environmental barrier coatings.
  • Design and optimize coating chemistries, including dopant selection, phase stabilization strategies, and compositional tailoring to enhance thermal stability, sintering resistance, toughness, and resistance to extreme environments.
  • Develop novel coating compositions for topcoats and bond coat-compatible systems suitable for extreme turbine operating temperatures.
  • Establish microstructure-property-performance relationships for coating systems under cyclic thermal and mechanical loading.
  • Evaluate coating degradation mechanisms, including phase transformation, thermally grown oxide (TGO) evolution, sintering behavior, and environmental attack.
  • Collaborate with process engineers to translate coating chemistry into scalable deposition methods (e.g., APS, SPS, EB-PVD, HVOF, VPS).
  • Support technology development efforts in collaboration with GE Vernova businesses and research teams to advance future coating technologies and product roadmaps.
  • Lead high-temperature testing programs, including thermal cycling, burner rig testing, oxidation testing, and environmental durability assessments.
  • Drive innovation through publications, patents, and proposal development for internally and externally funded programs.
  • Identify and develop collaborative relationships with academic institutions, national laboratories, industry partners, government agencies, and GE Vernova experts to maximize technical impact.
  • Collaborate effectively with multidisciplinary teams including materials scientists, mechanical engineers, manufacturing engineers, modelers, and quality specialists.
Required Qualifications

PhD in Materials Science & Engineering, Ceramic Engineering, Metallurgical Engineering, Mechanical Engineering, or a related discipline with 0 years of experience. 3+ years of experience in advanced ceramics, coatings, high-temperature alloys, computational materials science, or related materials technologies through doctoral research, publications, internships, or other relevant research experience.

Eligibility Requirements

Due to the nature of the duties of this position, this role requires the individual to be able to obtain and maintain a U.S. Government Security Clearance. A prerequisite for a security clearance is U.S. Citizenship. Must be willing to work out of an office located in Niskayuna, NY.

Preferred Qualifications
  • Designing and modifying ceramic coating chemistries.
  • Phase equilibria, thermodynamics, and high-temperature kinetics of ceramic materials.
  • High-temperature alloy design and behavior, including phase stability, oxidation resistance, creep, diffusion, and environmental degradation.
  • High-temperature oxidation, corrosion, and environmental degradation mechanisms.
  • Integrated computational and experimental approaches for advanced materials development, including CALPHAD, computational thermodynamics, materials informatics, machine learning, finite element modeling, or related tools.
  • Bridging computational predictions with experimental validation to establish composition-process-microstructure-property-performance relationships in advanced materials systems.
  • Strong background in microstructural characterization techniques (SEM, TEM, XRD, EBSD, EDS) and thermal/mechanical property evaluation.
  • Practical knowledge of safety practices related to experimental design and laboratory operations.
  • Experience working with coating deposition technologies relevant to turbine components.
  • Research experience in ceramic coatings, high-temperature materials, thermal barrier coatings, environmental barrier coatings, or related advanced materials systems.
  • Experience developing next-generation TBC chemistries beyond conventional systems, including strong understanding of thermodynamics, degradation kinetics, phase stability, and diffusion in high-temperature material systems.
  • Familiarity with computational thermodynamics (CALPHAD), ICME methodologies, materials modeling, or materials informatics tools for materials design and optimization.
  • Demonstrated research accomplishments through peer-reviewed publications, conference presentations, patents, collaborative research projects, or other scholarly achievements.
  • Experience contributing to research proposals, fellowship applications, or externally funded research programs.
  • Demonstrated ability to independently conduct research and communicate technical findings through publications, presentations, and technical reports.
  • Excellent oral and written communication skills.
  • Strong interpersonal and collaboration skills.
GE Vernova offers a great work environment, professional development, challenging careers, and competitive compensation.

GE Vernova is an Equal Opportunity Employer. Employment decisions are made without regard to race, color, religion, national or ethnic origin, sex, sexual orientation, gender identity or expression, age, disability, protected veteran status or other characteristics protected by law. GE Vernova will only employ those who are legally authorized to work in the United States for this opening. Any offer of employment is conditioned upon the successful completion of a drug screen (as applicable).

Relocation Assistance Provided: Yes

For candidates applying to a U.S. based position, the pay range for this position is between $89,300.00 and $148,700.00. The Company pays a geographic differential of 110%, 120% or 130% of salary in certain areas. The specific pay offered may be influenced by a variety of factors, including the candidate’s experience, education, and skill set. Bonus eligibility: discretionary annual bonus. This posting is expected to remain open for at least seven days after it was posted on August 19, 2026.

Available benefits include medical, dental, vision, and prescription drug coverage; access to Health Coach from GE Vernova, a 24/7 nurse-based resource; and access to the Employee Assistance Program, providing 24/7 confidential assessment, counseling and referral services.
  • Medical, dental, vision, and prescription drug coverage.
  • Access to Health Coach from GE Vernova, a 24/7 nurse-based resource.
  • Access to the Employee Assistance Program, providing 24/7 confidential assessment, counseling and referral services.
Retirement benefits include the GE Vernova Retirement Savings Plan, a tax-advantaged 401(k) savings opportunity with company matching contributions and company retirement contributions, as well as access to Fidelity resources and financial planning consultants.Other benefits include tuition assistance, adoption assistance, paid parental leave, disability benefits, life insurance, 12 paid holidays, and permissive time off.

GE Vernova Inc. or its affiliates (collectively or individually, GE Vernova) sponsor certain employee benefit plans or programs GE Vernova reserves the right to terminate, amend, suspend, replace, or modify its benefit plans and programs at any time and for any reason, in its sole discretion. No individual has a vested right to any benefit under a GE Vernova welfare benefit plan or program. This document does not create a contract of employment with any individual.

Addressing the climate crisis is an urgent global priority and we take our responsibility seriously. That is our singular mission at GE Vernova: continuing to electrify the world while simultaneously working to help decarbonize it. If we want our energy future to be different…we must be different. Our mission is embedded in our name. We retain our treasured legacy, GE, in our name as an enduring and hard-earned badge of quality and ingenuity. Ver / verde signal Earth’s verdant and lush ecosystems. Nova, from the Latin novus, nods to a new, innovative era of lower carbon energy that GE Vernova will help deliver. Together, we have The Energy to Change the World. www.gevernova.com

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