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Electrochemistry Jobs (NOW HIRING)

Verdox seeks an Electrochemistry Technologist to join our R&D team. This position reports to the Electrochemist. Key Responsibilities * Light synthesis of electrode material; fabrication of ...

Bosch Research is looking for an intern in electrochemical modelling technologies. Our goal is to enable improved Bosch products through deep understanding of thermodynamic, kinetic, and transport ...

Bosch Research is looking for an intern in electrochemical modelling technologies. Our goal is to enable improved Bosch products through deep understanding of thermodynamic, kinetic, and transport ...

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electrochemistry information

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$31.5K

$95.2K

$136K

How much do electrochemistry jobs pay per year?

As of Aug 24, 2026, the average yearly pay for electrochemistry in the United States is $95,196.00, according to ZipRecruiter salary data. Most workers in this role earn between $87,500.00 and $106,500.00 per year, depending on experience, location, and employer.

What is electrochemistry?

Electrochemistry is the scientific study of chemical processes that move electrons, and particularly how and when that movement creates electricity. Most electrochemistry focuses on understanding and improving chemically-caused electrical reactions. For example, electrochemists may study the impact of energy storage in different chemicals or look for ways to generate more electricity from the same substance. Electrochemistry also evaluates corrosion caused by the movement of electricity. Electrochemistry is a branch of physical chemistry, which deals with the larger question of how the laws of physics apply to atoms and chemical reactions. It should not be confused with the similarly-named chemical physics, which focuses more on physics than on chemistry.

What is an electrochemist?

Electrochemists are scientists who study the chemical processes that involve the movement of electrons, particularly the interactions between electricity and chemical reactions. They work on topics such as batteries, fuel cells, corrosion, and electroplating. Electrochemists may conduct research, develop new materials or devices, and apply their findings in industries like energy storage, environmental monitoring, and electronics. Their work is crucial for advancing technologies such as rechargeable batteries and sustainable energy solutions.

What are the key skills and qualifications needed to thrive as an electrochemist, and why are they important?

To thrive as an Electrochemist, you need a solid background in chemistry, physics, and mathematics, often supported by a degree in chemistry or chemical engineering and relevant laboratory experience. Familiarity with analytical instruments such as potentiostats, electrochemical impedance spectroscopy, and software for data analysis is typically required. Critical thinking, attention to detail, and strong problem-solving abilities are essential soft skills for interpreting experimental results and troubleshooting complex issues. These skills ensure accurate research outcomes, innovation in electrochemical applications, and the advancement of technologies in areas like energy storage and corrosion prevention.

What are the typical challenges faced by professionals working in electrochemistry, and how can they be addressed?

Professionals in electrochemistry often encounter challenges such as managing complex instrumentation, maintaining precise control over experimental conditions, and interpreting nuanced electrochemical data. Collaboration with multidisciplinary teams, including chemists, engineers, and material scientists, is essential to troubleshoot technical issues and develop innovative solutions. Staying updated with the latest advancements in analytical techniques and regularly attending workshops or conferences can also help address these challenges and foster career growth.

What is the difference between Electrochemistry vs Chemical Engineer?

AspectElectrochemistryChemical Engineer
Required CredentialsBachelor's in Chemistry, Chemical Engineering, or related; certifications in electrochemical analysisBachelor's or higher in Chemical Engineering; professional engineering license often preferred
Work EnvironmentLaboratories, research facilities, industrial plants involving electrochemical processesFactories, chemical plants, design offices, research labs
Industry UsageElectrochemical research, battery development, corrosion studiesProcess design, plant operation, product development across various industries

Electrochemistry focuses specifically on electrochemical processes and research, often within labs or specialized industries. Chemical engineers have a broader scope, working on chemical process design and manufacturing. While both roles require chemistry knowledge, electrochemistry is more specialized in electrochemical systems, whereas chemical engineering covers a wider range of chemical processes.

What cities are hiring for Electrochemistry jobs?

Cities with the most Electrochemistry job openings:

What are the most commonly searched types of Electrochemistry jobs?

The most popular types of Electrochemistry jobs are:

What states have the most Electrochemistry jobs?

States with the most job openings for Electrochemistry jobs include:

Infographic showing various Electrochemistry job openings in the United States as of August 2026, with employment types broken down into 1% Internship, 16% Full Time, and 83% Part Time. Highlights an 16% Physical, 1% Hybrid, and 83% Remote job distribution, with an average salary of $95,196 per year, or $45.8 per hour.

Scientist, Electrochemistry

Atlas Data Storage, Inc.

South San Francisco, CA โ€ข On-site

$190 - $260/hr

Other

Re-posted 5 days ago


Job description

Atlas Data Storage is revolutionizing the field of information technology by innovating molecular data storage solutions. At Atlas, we are developing a massively parallel, high-throughput, semiconductor-based information storage technology by leveraging the unique properties of synthetic DNA. Working at Atlas means being part of something bigger than yourself, where every person in every role has the opportunity to make a difference. We are looking for highly self-motivated and innovative candidates to join our team and help us build the future of information technology.

This is a unique opportunity to join a talented team of scientists and engineers focused on solving critical challenges in molecular data storage. As a Principal Scientist in technology development, you will serve as the primary subject matter expert and scientific leader driving the design, development, and optimization of our electrochemical devices. You will spearhead the integration of complex electrochemical systems with our semiconductor platforms, guiding the strategic direction of our sensor architecture. The ideal candidate is a highly experienced, rigorous, and detail-oriented experimentalist with a proven track record in commercializing electrochemical biosensors and a passion for driving innovation in a highly interdisciplinary environment.

Responsibilities
  • Serve as an Electrochemist individual contributor and subject matter leader for the design, development, and optimization of next-generation electrochemical CMOS devices.
  • Develop an optimized solution for acid generation from an array of CMOS based electrodes.
  • Develop and execute complex workflows that integrate advanced electrochemical detection methods with our high-density semiconductor platforms.
  • Design, develop, and execute comprehensive electrochemical characterization protocols to evaluate sensor performance, sensitivity, and reliability.
  • Process and analyze complex experimental data to troubleshoot technical issues, guide sensor optimization, and drive project direction.
  • Maintain detailed and meticulous records of all experimental work and analysis.
  • Effectively communicate experimental results, data analysis, and strategic next steps to team members and executive leadership.
  • Contribute as a scientific leader while thriving in crossโ€‘functional collaborations between our synthesis, engineering, sequencing, and bioinformatics teams.
  • As needed, lead complex projects associated with our CMOS platforms.
  • Provide technical mentorship and guidance to junior scientists and research associates.
Qualifications
  • Advanced degree (PhD) in Electrochemistry, Analytical Chemistry, Physical Chemistry, Physics or a closely related field.
  • 5 years of relevant academic / industry experience specifically focused on the research, development, and commercialization of electrochemical biosensors.
  • Deep, handsโ€‘on expertise in advanced electrochemical techniques (e.g., cyclic voltammetry, electrochemical impedance spectroscopy, ac voltammetry, chronoamperometry) and sensor characterization on solid substrates.
  • Strong understanding of electron transfer kinetics at microelectrodes.
  • Proven track record of developing ultraโ€‘sensitive electrochemical bioassays and integrating them with microelectronic or semiconductor devices.
  • Experience in optimizing electrode interfaces and solution formations to increase current densities at an electrode.
  • Experience in performing electrochemistry on high density electrode arrays is desirable.
  • Strong data analysis and scripting experience is highly desirable.
  • Experience in a biotech or pharma R&D environment is highly desirable.
  • Must be a creative and detail-oriented person with excellent analytical, verbal, and written communication skills.
  • Exceptional collaboration skills and ability to work seamlessly in a dynamic and fastโ€‘paced environment.
Physical Demands & Work Environment
  • Work will be performed onsite in office and laboratory space located in South San Francisco.
  • Mobility: Must be able to move about the laboratory and office environment regularly. This includes standing and walking for extended periods, often up to 6โ€“8 hours per day.
  • Manual Dexterity: Must have fine motor skills and steady hands to handle delicate instruments, operate laboratory equipment, pipette accurately, and perform repetitive benchwork with precision.
  • Lifting/Carrying: Must be able to lift and carry up to 40 pounds occasionally, such as boxes of lab supplies or equipment.
  • Visual Acuity: Must have sufficient visual acuity to read small print on labels, instrument displays, and computer monitors. Close vision, color vision, and the ability to adjust focus are required.
  • Environmental Conditions: Frequently exposed to typical laboratory conditions, including biological samples, chemicals, and reagents. Must be able to wear appropriate personal protective equipment (PPE) such as lab coats, gloves, and safety goggles as required.
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