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Battery Research Jobs (NOW HIRING)

Battery R&D Internship Enovix is seeking an R&D Intern to support the design, fabrication, testing, and analysis of lithium-ion batteries with silicon-based anodes. This role is well suited for a PhD ...

Battery Scientist

San Leandro, CA · On-site

$115K - $150K/yr

Position Summary This Battery Scientist role is focused on accelerating development of Coreshell ... Collaborate within the Cell Development team and cross-functionally with R&D, product, commercial ...

A123 Systems, LLC is a leading developer and manufacturer of advanced batteries and battery systems ... Lead R&D projects focused on advanced energy storage chemistries, including Li-S and sodium-ion ...

Design bespoke test equipment and test automation software to support cross functional battery R&D testing * Mechanical design of test rigs in NX CAD software * Development of LabVIEW, Python, and ...

Sr. Battery Test Engineer

San Jose, CA · On-site

$144K - $189K/yr

Design bespoke test equipment and test automation software to support cross functional battery R&D testing * Mechanical design of test rigs in NX CAD software * Development of LabVIEW, Python, and ...

Design bespoke test equipment and test automation software to support cross functional battery R&D testing * Mechanical design of test rigs in NX CAD software * Development of LabVIEW, Python, and ...

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Battery Research information

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How much do battery research jobs pay per hour?

As of Jun 1, 2026, the average hourly pay for battery research in the United States is $34.76, according to ZipRecruiter salary data. Most workers in this role earn between $21.88 and $45.43 per hour, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive in Battery Research, and why are they important?

To excel in Battery Research, you need a solid background in chemistry, materials science, or electrical engineering, often supported by an advanced degree such as a master's or PhD. Familiarity with laboratory equipment, electrochemical analysis tools, and data analysis software is typically required, along with knowledge of safety protocols. Strong problem-solving abilities, attention to detail, and effective teamwork are crucial soft skills for innovation and collaboration in this field. These competencies are essential for advancing battery technology and ensuring safe, reliable, and efficient energy storage solutions.

What are some common challenges faced by professionals in battery research, and how can they be addressed?

Professionals in battery research often encounter challenges such as optimizing battery performance while maintaining safety and cost-effectiveness. Keeping up with rapid technological advancements and integrating new materials can also be demanding. Collaboration with multidisciplinary teams, including chemists, engineers, and data scientists, is essential to address these issues. Staying updated through conferences and journals, as well as developing strong problem-solving skills, can help researchers overcome these hurdles and contribute to innovative solutions.

What is battery research?

Battery research involves the study and development of new types of batteries and improvements to existing battery technologies. Researchers in this field focus on increasing energy density, improving charging speeds, enhancing safety, and reducing costs. The work often includes exploring new materials such as lithium, solid-state electrolytes, or sustainable alternatives. Battery research is crucial for advancing technologies in electric vehicles, renewable energy storage, portable electronics, and more.

What is the highest paid research job?

In battery research, senior roles such as Lead Battery Scientist or Director of Battery Research tend to be the highest paid, often earning six-figure salaries. These positions typically require advanced degrees, extensive experience, and expertise in electrochemistry, materials science, or related fields.

What is the difference between Battery Research vs Battery Testing Engineer?

AspectBattery ResearchBattery Testing Engineer
Primary FocusDeveloping new battery technologies and materialsEvaluating and validating battery performance through testing
Required CredentialsAdvanced degrees in materials science, chemistry, or engineeringBachelor's or master's in engineering, electrochemistry, or related fields
Work EnvironmentResearch labs, R&D centersTesting facilities, labs, quality assurance departments
Industry UsageUsed by R&D teams to innovate new battery solutionsUsed by quality control and product development teams to ensure performance standards

Battery Research focuses on developing new battery technologies and materials, often requiring advanced degrees and working in research labs. Battery Testing Engineers evaluate and validate battery performance through rigorous testing, typically with a bachelor's or master's degree, working in testing facilities. Both roles are essential in the battery industry but serve different stages of product development and quality assurance.

More about Battery Research jobs
What cities are hiring for Battery Research jobs? Cities with the most Battery Research job openings:
What are the most commonly searched types of Battery Research jobs? The most popular types of Battery Research jobs are:
What states have the most Battery Research jobs? States with the most job openings for Battery Research jobs include:
R&D Intern

$40 - $45/hr

Full-time

Posted 16 days ago


Job description

Battery R&D Internship

Enovix is seeking an R&D Intern to support the design, fabrication, testing, and analysis of lithium-ion batteries with silicon-based anodes. This role is well suited for a PhD student or graduate researcher with strong experience in electrochemistry, battery materials, cell testing, and failure analysis.

The ideal candidate will bring deep technical expertise in battery materials and electrochemistry, a hands-on approach to experimentation, and enthusiasm for addressing complex challenges in silicon anode commercialization.

The intern should be comfortable working across fundamental science, experimental execution, and product-focused battery development. The intern will collaborate closely with scientists, engineers, and technical leadership to support the development of high-performance lithium-ion cells.

Key Responsibilities

The intern will contribute to one or more of the following areas:

  • Design and evaluate silicon-based anode materials, composites, binders, conductive additives, and electrode formulations.

  • Fabricate electrodes and coin, pouch, or other test cells for electrochemical evaluation.

  • Perform battery testing, including formation, cycling, rate capability, fast-charge testing, impedance measurements, and diagnostics.

  • Analyze capacity retention, coulombic efficiency, impedance growth, swelling, and other key performance metrics.

  • Investigate silicon anode degradation mechanisms, including volume expansion, SEI evolution, particle fracture, lithium inventory loss, and electrode-level failure modes.

  • Use materials characterization techniques such as SEM, TEM, XRD, XPS, Raman, FTIR, BET, TGA, or related methods, as applicable.

  • Develop clear, data-driven recommendations to guide silicon anode material and cell design.

  • Document experimental procedures, results, and conclusions in technical reports and presentations.

  • Work cross-functionally with materials, cell engineering, process development, and product teams.

Required Qualifications

  • Currently enrolled in a PhD program at a leading university, national laboratory, or research institute with a strong focus on batteries, electrochemistry, materials science, chemical engineering, mechanical engineering, or a related field.

  • Research experience in lithium-ion batteries, preferably silicon-carbon or other advanced anode systems.

  • Strong understanding of lithium-ion battery fundamentals, including electrode design, interfacial chemistry, SEI formation, transport limitations, and cell degradation.

  • Hands-on experience with battery cell assembly and electrochemical testing.

  • Ability to analyze complex experimental data and translate results into actionable technical insights.

Preferred Qualifications

  • Direct experience with silicon anode materials, silicon-carbon composites, pre

  • lithiation, binder systems, electrolyte additives, or high-loading electrode design.

  • Familiarity with advanced diagnostic methods such as EIS, GITT, dQ/dV analysis, post-mortem analysis, gas analysis, or mechanical swelling measurements.

  • Experience using Python, MATLAB, JMP, Origin, or similar tools for data analysis.

  • Publications, patents, or conference presentations related to lithium-ion batteries or advanced anode materials.

  • Experience working in industry, a national laboratory, or a collaborative applied research environment.

What You Will Gain

  • Hands-on experience developing next-generation silicon anode lithium-ion battery technology.

  • Exposure to startup-style R&D, rapid experimentation, and practical cell development.

  • Opportunity to work closely with experienced battery scientists and engineers.

  • Experience translating academic research into commercially relevant battery technology.

This is a paid internship that will be onsite at our Fremont, CA office, with an expected duration of 3-6 months. The hourly pay range is $40-$45, depending on experience, qualifications, and other job-related factors.