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Polymer Technology Jobs (NOW HIRING)

Requirements * BS/BA Degree in Chemistry, Chemical Engineering, Polymer Technology or Polymer Engineering * In depth understanding of statistical methods and experimental design techniques

Requirements * BS/BA Degree in Chemistry, Chemical Engineering, Polymer Technology or Polymer Engineering * In depth understanding of statistical methods and experimental design techniques

Requirements * BS/BA Degree in Chemistry, Chemical Engineering, Polymer Technology or Polymer Engineering * In depth understanding of statistical methods and experimental design techniques

Requirements * BS/BA Degree in Chemistry, Chemical Engineering, Polymer Technology or Polymer Engineering * In depth understanding of statistical methods and experimental design techniques

... foundational technologies that make our robots lighter, stronger, safer, and more capable. The ... You will lead a polymer chemistry-driven research and development efforts focused on novel polymer ...

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Polymer Technology information

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$50.5K

$89.3K

$155K

How much do polymer technology jobs pay per year?

As of Sep 13, 2026, the average yearly pay for polymer technology in the United States is $89,329.00, according to ZipRecruiter salary data. Most workers in this role earn between $70,000.00 and $115,000.00 per year, depending on experience, location, and employer.

What is polymer technology?

Polymer Technology is the field of science and engineering that focuses on the design, synthesis, processing, and application of polymers and plastics. It involves understanding the chemical and physical properties of polymers, how they can be manufactured, and how they are used in various industries such as automotive, packaging, textiles, electronics, and healthcare. Professionals in this field work on developing new polymer materials, improving existing ones, and finding innovative applications for polymers to meet industrial and consumer needs.

What are the key skills and qualifications needed to thrive in polymer technology?

To thrive in Polymer Technology, a solid background in chemistry, materials science, and polymer engineering is essential, typically supported by a relevant degree. Familiarity with analytical instruments (such as FTIR, DSC, and GPC), polymer processing equipment, and laboratory safety protocols is important, along with certifications like Six Sigma or Lean Manufacturing in some settings. Strong problem-solving abilities, attention to detail, and effective teamwork are vital soft skills in this field. These skills ensure the successful development, testing, and optimization of polymer materials for diverse industrial applications.

What are some common challenges faced by professionals working in polymer technology, and how can they be addressed?

Professionals in Polymer Technology often encounter challenges such as staying updated with rapidly evolving materials and manufacturing processes, troubleshooting polymer processing issues, and ensuring product quality under tight deadlines. Addressing these challenges typically involves continuous learning, collaboration with multidisciplinary teams (such as chemists, engineers, and quality assurance specialists), and leveraging analytical tools for quality control. Developing strong problem-solving skills and participating in regular training or industry seminars can also help professionals stay ahead in this dynamic field.

What is the difference between Polymer Technology vs Polymer Engineer?

AspectPolymer TechnologyPolymer Engineer
Required CredentialsTypically a degree in polymer science, materials science, or chemical engineeringSimilar credentials, often with additional engineering certifications
Work EnvironmentResearch labs, manufacturing facilities, R&D departmentsDesign, development, testing in labs and production settings
Industry UsageResearch institutions, manufacturing companies, R&D centersManufacturers, product development firms, industrial sectors
Common Search/ComparisonPolymer Technology vs Polymer Engineer

Polymer Technology focuses on research, development, and application of polymers, often emphasizing laboratory work and material innovation. Polymer Engineers apply engineering principles to design, develop, and optimize polymer-based products and processes. While both roles require similar educational backgrounds, Polymer Technology leans more toward research and material science, whereas Polymer Engineering emphasizes practical application and product development.

Is polymer technology a good career?

Polymer technology is a viable career path for those interested in materials science, involving the development and testing of polymers used in various industries such as packaging, automotive, and healthcare. It often requires knowledge of chemistry, engineering, and laboratory skills, with opportunities for advancement in research, manufacturing, and quality control roles.

What does a polymer technologist do?

A polymer technologist researches, develops, and tests polymer materials and products, such as plastics, rubbers, and composites. They work in laboratories or manufacturing settings, using analytical tools and techniques to improve material properties, ensure quality, and develop new applications. Strong knowledge of chemistry, materials science, and relevant safety standards is essential for this role.
More about Polymer Technology jobs

What cities are hiring for Polymer Technology jobs?

Cities with the most Polymer Technology job openings:

What states have the most Polymer Technology jobs?

States with the most job openings for Polymer Technology jobs include:

Infographic showing various Polymer Technology job openings in the United States as of September 2026, with employment types broken down into 1% Internship, 1% As Needed, 80% Full Time, 16% Part Time, and 2% Contract. Highlights an 81% Physical, 3% Hybrid, and 16% Remote job distribution, with an average salary of $89,329 per year, or $42.9 per hour.

R&D Scientist - Polymer & Surface Chemistry

Newark, DE • On-site

Other

Posted 6 days ago


Job description

Job Description Join Sepax Technologies and help develop the next generation of chromatography materials.


We are seeking an R&D Scientist with expertise in polymer chemistry, materials chemistry, and/or surface modification to contribute to the development of advanced separation materials and HPLC products.


This is a hands-on research position for a scientist who enjoys designing experiments, synthesizing and modifying materials, solving complex chemistry problems, and translating laboratory research into real-world separation technologies.


The successful candidate will work on projects involving polymer and/or silica-based materials, surface functionalization, particle chemistry, chromatography, and separation science at our headquarters in Newark, Delaware.


Required Qualifications

  • Ph.D. in Chemistry, Polymer Chemistry, Materials Science, Chemical Engineering, or a closely related discipline.

  • Strong hands‑on research experience in polymer synthesis, materials synthesis, surface chemistry, surface modification, functionalization, or related chemistry.

  • Demonstrated ability to independently design experiments, troubleshoot synthesis challenges, interpret results, and optimize experimental conditions.

  • Experience using analytical and characterization techniques to evaluate synthesized or modified materials.

  • Strong scientific documentation, data analysis, and technical communication skills.

  • Ability to work independently while collaborating effectively within a multidisciplinary R&D environment.


Highly Preferred Experience

  • Silica particle synthesis and/or silica surface modification.

  • Polymer functionalization, grafting, coating, or surface immobilization.

  • Development of porous materials or functional particles.

  • HPLC stationary‑phase or chromatography‑media development.

  • HPLC method development and separation science.

  • Understanding of structure‑property relationships as they relate to chromatographic performance.

  • Experience taking a material or chemistry concept from initial synthesis through optimization and performance evaluation.


What You’ll Work On

  • Design, synthesize, modify, and characterize advanced materials for chromatographic separations.

  • Develop and optimize surface‑modification and functionalization chemistries.

  • Investigate relationships between material structure, surface chemistry, and chromatographic performance.

  • Design experiments to troubleshoot synthesis, reproducibility, and product‑performance challenges.

  • Evaluate new chemistries and materials for potential use in HPLC stationary phases and separation products.

  • Collaborate with R&D, Technology, and Production teams to transition successful research concepts toward scalable products.

  • Document experimental methods, results, conclusions, and recommendations.

  • Contribute scientific ideas to new product development and continuous improvement of existing technologies.

  • File patent applications.


Company Description

Sepax is a fast‑growing technology company and has emerged as a leader in the biological separation industry. Sepax has been developing a wide range of intellectual properties in the areas of particle synthesis, surface modification, LC column packing, bulk media production and purification process development. Sepax Technologies, Inc. focuses on three business areas: 1) bioanalytical solutions, 2) solution‑based process purification and 3) medical diagnostics. Sepax Quality Management System is ISO 9001:2015 certified. Sepax Technologies Inc. is an Equal Opportunity Employer.


Sepax is an Equal Opportunity Employer.


At Sepax, scientists have the opportunity to work directly on technologies that become real‑world separation products. Our expertise spans particle synthesis, surface modification, chromatography media, LC column technology, and purification development.


As a member of our R&D team, you’ll work in a hands‑on environment where scientific ideas can move from experimental concept through development and ultimately into products used by customers in the life science and biopharmaceutical industries.

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