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Research Job In Electrochemistry Energy Storage Jobs

D. in mechanical engineering, chemical engineering, materials science, or a closely related field, with 0-3 years of relevant research experience in battery systems or electrochemical energy storage.

Senior Chemist

Laurel, MD ยท On-site

$105 - $290/hr

... electrochemistry, energy storage, inorganic chemistry, and advanced materials development. In our group, researchers are encouraged to develop original research concepts, establish new technical ...

Minimum 8 years working experience in the battery energy storage area. * Knowledge in battery pack design, electrochemistry, thermal management, battery cell, and electrical energy storage.

Senior Scientist, Electrolyte

Woburn, MA ยท On-site +1

$100K - $136K/yr

... research and development. Our AI-enhanced, high-energy-density and high-power-density Li-Metal and ... salts in high energy, high-capacity rechargeable lithium-ion cells. * Electrochemical ...

This postdoctoral research position is housed in a laboratory focused on clean energy and carbon neutrality, with an emphasis on highimpact research in electrochemical energy conversion. The ...

Computational Materials Scientist

Woburn, MA ยท On-site +1

$180K - $200K/yr

... research and development. Our AI-enhanced, high-energy-density and high-power-density Li-Metal and ... Strong background in electrochemical energy materials and extensive computational work focused on ...

... storage standard for the new era of renewable energy on a resilient grid. Sodium-Ion is cheap ... in cell, battery, or electrochemical testing & development with demonstrated ownership of R&D or ...

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Research Job In Electrochemistry Energy Storage information

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$50K

$98.6K

$173.5K

How much do research job in electrochemistry energy storage jobs pay per year?

As of Aug 23, 2026, the average yearly pay for research job in electrochemistry energy storage in the United States is $98,569.00, according to ZipRecruiter salary data. Most workers in this role earn between $72,000.00 and $114,500.00 per year, depending on experience, location, and employer.

What are some common challenges faced by researchers in electrochemistry energy storage, and how can they be addressed?

Researchers in electrochemistry energy storage often encounter challenges such as maintaining reproducibility in experimental results, managing the degradation of materials, and staying updated with rapidly evolving technologies. These obstacles can be addressed by implementing rigorous lab protocols, collaborating closely with multidisciplinary teams, and regularly participating in professional workshops or conferences. Additionally, leveraging advanced characterization tools and staying connected with industry trends can help researchers develop innovative solutions and advance their careers.

What are the key skills and qualifications needed to thrive in a research job in electrochemistry energy storage, and why are they important?

A strong background in chemistry, materials science, or chemical engineering with a relevant advanced degree is essential for a research job in electrochemistry energy storage. Experience with electrochemical analysis tools such as potentiostats, battery cyclers, and related software, as well as familiarity with safety protocols and data analysis tools, is typically required. Critical thinking, attention to detail, collaboration, and effective scientific communication are crucial soft skills for this role. These skills and qualifications enable researchers to design innovative experiments, interpret complex data, and contribute to advancements in energy storage technologies.

Is research job in electrochemistry energy storage in demand?

Research jobs in electrochemistry energy storage are in increasing demand due to the growing focus on renewable energy and battery technology development. These roles often require expertise in electrochemical analysis, materials science, and advanced laboratory skills, with opportunities expanding in academia, industry, and government research institutions.

What is the role of electrochemistry in energy storage?

Electrochemistry is fundamental to energy storage research jobs, as it involves understanding and designing batteries, supercapacitors, and other devices that store and release electrical energy through chemical reactions. Professionals in this field analyze electrochemical processes, develop new materials, and optimize device performance using tools like electrochemical impedance spectroscopy. These roles often require knowledge of chemistry, materials science, and laboratory skills to improve energy density, efficiency, and lifespan of storage systems.
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Graduate R&D Intern - Electrochemistry

MSA, The Safety Company

Cranberry Township, PA โ€ข On-site

$14.50 - $19.50/hr

Other

Posted 25 days ago


Job description

Overview
Are you someone who is passionate, motivated, and driven to make a difference? If so, MSA Safety is the perfect fit for your career.
At MSA, SAFETY is who we are AND it is what we do. We are a purpose-driven company committed to deploying innovation and technology to deliver on our Mission to help protect people and assets all around the world. We continue to be relentless in our pursuit of solving our customers greatest problems so they can go home safe each and every day.
Are you in? Read on for more details about this particular role.
Responsibilities
MSA Safety's Sensor Chemistry team is looking for an engaged and inquisitive team member with a passion for electrochemistry. If you like chemistry and technology, have a customer-focused mindset, and are imaginative, creative, and hands-on, we want to hear from you!
Responsibilities
As a Graduate R&D Intern in Electrochemistry at MSA Safety, you will work alongside an experienced team to design and develop sensors that are used to sense dangerous atmospheres accurately and reliably. This challenging but exciting work helps keep people safe from explosive or toxic gases, monitors occupational exposures and emissions to such agents, and ultimately safeguards workers and their communities.
In this role, you will:
  • Support and accelerate new product development through sensor prototyping and testing.
    • Develop an understanding of electrochemical sensor design, manufacturing, and performance. Develop electrochemical systems for target gases of interest in collaboration with technical mentors.
    • Lead sensor prototyping activities that advance new product development or product improvement initiatives.
    • Organize and execute test plans. Compile and analyze results, making recommendations on next steps.
  • Support MSA product continuous improvement.
    • Apply technical expertise to troubleshoot and resolve a broad variety of electrochemical gas sensor product, production, and/or sourcing challenges.
  • Characterize electrochemical sensor systems by deploying a variety of statistical and laboratory techniques.

This role is right for you if:
  • You are passionate about electrochemistry and its application to real-world problems.
  • You want your work to be meaningful.
  • You are eager to learn and adaptable.
  • You like your work to be dynamic and varied from day-to-day.
  • You like being hands-on and are comfortable in a laboratory environment.
  • You enjoy working within global teams and with a diverse group of peers, whose experience may range from interns to PhD-level experts.
  • You have strong interpersonal and communication skills.
  • You have demonstrated the ability to manage your time across multiple simultaneous projects.
  • You can commit to an extended internship (i.e. 9 months to 1 year).

Qualifications
Skills and experiences required:
  • Demonstrated knowledge/experience with electrochemistry and electrochemical systems, such as sensors, batteries, or fuel cells.
  • Demonstrated knowledge of the influence of chemical structures and material morphology in electrochemical systems.
  • Experience applying tools like Python or MATLAB for data analysis.
  • Strong interpersonal skills and the desire to work within a team.
  • Excellent written and oral communication skills. Ability to present technical material to a variety of audiences and create concise technical reports that support engineering judgments.

Skills and experiences preferred:
  • Experience in applying Design for Six Sigma (DFSS) principles and/or inferential statistics.
  • Familiarity with instrumental analysis techniques such as FTIR, GC-MS, XRF, XRD, SEM, etc.

Education required:
  • Currently pursuing and/or successful completion of a graduate degree in electrochemistry
  • Bachelor's of Science in a related scientific field or engineering discipline