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Chemical Slurry Engineer Jobs (NOW HIRING)

This role is pivotal in bridging slurry formulations to cell-level performance through mastery of ... Deep knowledge of solid electrolytes, including ion transport dynamics and chemical/mechanical ...

This position will work closely with production operators, technicians, and engineers to help set ... Hands-on experience working with hazardous materials, dry powder processes, and wet chemical/slurry ...

This position will work closely with production operators, technicians, and engineers to help set ... Hands-on experience working with hazardous materials, dry powder processes, and wet chemical/slurry ...

This role is pivotal in bridging slurry formulations to cell-level performance through mastery of ... Deep knowledge of solid electrolytes, including ion transport dynamics and chemical/mechanical ...

Product Engineer

Franklin Township, NJ · On-site

$28 - $36/hr

... * BS/MS in Chemical Engineering, Chemistry, or Materials Science & Engineering * Hands-on ... Electrode processing: slurry mixing, viscosity/rheology, wet coating, tape casting/doctor blade ...

Product Engineer

Franklin Township, NJ · On-site

$28 - $36/hr

... * BS/MS in Chemical Engineering, Chemistry, or Materials Science & Engineering * Hands-on ... Electrode processing: slurry mixing, viscosity/rheology, wet coating, tape casting/doctor blade ...

Sr. Process Engineer

Hayward, CA

$119K - $154K/yr

Characterize slurry and separator quality using rheological, mechanical, imaging and ... PhD, MS (3+ years work experience), or BS (5+ years experience) in Materials Science, Chemical ...

In the Coating area, we apply the catalytic slurry created in the Slurry Prep department to the ... Engineers in Mechanical, Automation, Chemical, and Industrial concentrations are the ideal ...

Showing results 41-60

Chemical Slurry Engineer information

See salary details

$40K

$87.5K

$140K

How much do chemical slurry engineer jobs pay per year?

As of Sep 14, 2026, the average yearly pay for chemical slurry engineer in the United States is $87,487.00, according to ZipRecruiter salary data. Most workers in this role earn between $67,500.00 and $106,500.00 per year, depending on experience, location, and employer.

What does a chemical slurry engineer do?

A Chemical Slurry Engineer is responsible for designing, developing, and optimizing the preparation, handling, and application of chemical slurries used in various industrial processes. They ensure the correct composition and stability of slurries, monitor performance, and troubleshoot any issues related to mixing, transport, or storage. Their work is crucial in industries such as mining, semiconductor manufacturing, and wastewater treatment, where precise slurry management impacts product quality and operational efficiency.

What are the key skills and qualifications needed to thrive as a chemical slurry engineer, and why are they important?

To thrive as a Chemical Slurry Engineer, you need a strong background in chemical engineering principles, materials science, and process optimization, usually supported by a relevant engineering degree. Familiarity with laboratory analysis tools, process simulation software, and safety management systems is typically required. Strong problem-solving abilities, attention to detail, and effective teamwork and communication skills help distinguish top performers in this field. These skills are crucial for ensuring the safe, efficient, and consistent production of high-quality slurries in industrial applications.

What are some common challenges a chemical slurry engineer faces when optimizing slurry formulations for industrial processes?

Chemical Slurry Engineers often encounter challenges in achieving the right balance between slurry stability, viscosity, and particle distribution to meet specific process requirements. Ensuring consistent quality while adapting to variations in raw material properties can require frequent adjustments and close collaboration with production teams. Additionally, maintaining safety standards and minimizing environmental impact during slurry handling and disposal are important ongoing responsibilities. Overcoming these challenges typically involves constant monitoring, data analysis, and cross-functional teamwork with chemists, operators, and quality control personnel.

What is the difference between Chemical Slurry Engineer vs Chemical Process Engineer?

AspectChemical Slurry EngineerChemical Process Engineer
CredentialsBachelor's in Chemical Engineering, relevant certificationsBachelor's in Chemical Engineering, relevant certifications
Work EnvironmentIndustrial plants, manufacturing facilities, slurry handling systemsChemical plants, manufacturing, process design
Industry UsageSpecializes in slurry formulation, handling, and applicationDesigns and optimizes chemical processes across industries

Both roles require a chemical engineering background and similar certifications. The Chemical Slurry Engineer focuses on slurry-specific applications and handling, often within manufacturing or mining industries. In contrast, the Chemical Process Engineer works on broader chemical process design and optimization across various sectors. While their skills overlap, their daily tasks and industry focus differ.

What are popular job titles related to Chemical Slurry Engineer jobs?

For Chemical Slurry Engineer jobs, the most frequently searched job titles are:

Infographic showing various Chemical Slurry Engineer job openings in the United States as of September 2026, with employment types broken down into 1% Internship, 89% Full Time, 7% Part Time, and 3% Contract. Highlights an 84% Physical, 5% Hybrid, and 11% Remote job distribution, with an average salary of $87,487 per year, or $42.1 per hour.

Staff Engineer, Anode R&D

Hayward, CA

Blue Current
Clean Energy Semiconductors Manufacturing • 11 - 50 employees

Full-time

Re-posted 23 days ago


Job description

Position Summary

Blue Current is seeking a highly experienced and hands-on Staff Engineer, Anode R&D to lead the development and optimization of solid-state anodes. This role is pivotal in bridging slurry formulations to cell-level performance through mastery of rheology, mixing sequences, and material selection. The successful candidate will design and execute sophisticated experiments to evaluate the impact of novel materials, including active/inactive materials and solid-polymer electrolytes. By leveraging advanced electrochemical characterizations and analytical tools, the candidate will correlate anode microstructure with long-term cycling stability and degradation mechanisms. The ideal candidate combines deep expertise in solid electrolytes and silicon/graphite anode chemistry. This role requires a strategic mindset to drive intellectual property and manage collaborations with external vendors and national laboratories.

Essential Functions & Responsibilities

  • Lead development of electrode formulations for solid-state composite anodes to improve energy density, cycling stability, and rate capability.
  • Optimize mixing sequences and drying kinetics to control electrode microstructure, minimize defects, and enhance dispersion.
  • Develop advanced diagnostic protocols and post-mortem workflows to characterize particle interfaces and complex electrode-electrolyte reactions.
  • Validate performance impact by assembling and testing coin and pouch cells (half/full) across varied rate and temperature profiles. 
  • Lead systematic FMEA and RCA efforts to identify and mitigate failure modes specifically related to the anodes and polymer electrolytes.
  • Establish robust SOPs for material evaluation and slurry process to ensure reproducibility and data integrity.
  • Serve as the technical interface with external material vendors, characterization facilities, collaborators, and academic or national lab partners.
  • Lead projects by developing clear, actionable plans with defined milestones and success metrics, managing effective timelines, and ensuring high-quality, on-schedule execution.
  • Continuously survey and interpret literature on solid-state battery materials and architectures, integrating key insights into the company's technical strategies.
  • Drive innovation and IP development by exploring novel materials, cell designs, and processing approaches that advance solid-state cell performance.
  • Support a strong safety culture by following and improving laboratory safety practices, demonstrating exemplary experimental techniques, and helping implement best-practice updates.

Minimum Qualifications

Education

  • PhD (with 3+ years of industry experience), MS (with 6+ years of experience), or BS (with 8+ years of experience) in Materials Science, Chemical Engineering, Chemistry, Physics, or a related field, with a focus on batteries or electrochemical devices

Experience

  • Hands-on experience in lithium-ion or solid-state battery development, with direct involvement in slurry development or process optimization.
  • Demonstrated experience developing and optimizing anode slurry and composite electrodes in an industry or applied research environment
  • Hands-on experience assembling cells and executing electrochemical testing to evaluate material and cell performance
  • Experience working cross-functionally with materials, cell engineering, and leadership teams to advance programs

Skills & Knowledge

  • Deep knowledge of solid electrolytes, including ion transport dynamics and chemical/mechanical stability requirements
  • Extensive expertise in anode active materials, specifically focusing on the electrochemical behavior of graphite and silicon anodes
  • Extensive expertise in full-cell and half-cell testing and interpretation of electrochemical data (e.g., EIS, CV, GITT, dQ/dV analysis)
  • Familiarity with analytical and characterization tools such as SEM, XRD, TGA, FTIR, DSC, and related techniques
  • Demonstrated project leadership skills, including the ability to lead cross-functional investigations and deliver high-quality results in a fast-paced environment
  • Excellent problem-solving and communication skills, with the ability to translate technical findings into strategic engineering steps for senior leadership
  • Commitment to safety, with experience in following and improving laboratory and pilot-line best practices

Preferred Qualifications

  • Direct experience with solid-state battery systems, particularly composite anodes with sulfide-based or polymer-based solid electrolytes
  • Direct experience with slurry formulation, rheology, and electrode processing for composite materials
  • Direct experience identifying failure modes and driving root-cause analysis, particularly with silicon and graphite anodes

Core Values - Minimum Qualifications

Safety & Security First

For employees, customers, and intellectual property

  • Demonstrated commitment to maintaining a safe and secure work environment, including adherence to workplace safety protocols, data privacy standards, and confidentiality requirements.
  • Proven ability to identify and appropriately escalate potential risks to personnel, customers, or sensitive information.

Trust & Respect

Treat everyone with honesty, dignity, and sensitivity. Embrace different perspectives. Be humble.

  • Demonstrated ability to communicate and collaborate effectively with individuals of diverse backgrounds, perspectives, and working styles.
  • Track record of maintaining professionalism, integrity, and discretion in all workplace interactions.

Ownership & Accountability

Take responsibility and action. Set goals and deliver. Don't wait for others.

  • Demonstrated ability to independently prioritize, execute, and follow through on responsibilities with minimal supervision.
  • Proven track record of setting measurable goals, meeting deadlines, and taking initiative to resolve challenges proactively.

Technical Excellence

Always strive for the best solution possible.

  • Demonstrated commitment to quality and continuous improvement in delivering work product, solutions, and outcomes within area of expertise.
  • Ability to evaluate options critically and apply sound judgment to identify the most effective and scalable solution.

Learn & Be Curious

Think outside the box. Always learning.

  • Demonstrated ability to quickly acquire new skills, tools, or domain knowledge in response to evolving business needs.
  • Proven track record of applying creative or unconventional thinking to solve problems.

Be Resourceful

Be hungry, frugal, and flexible. Use what you have. Find a way.

  • Demonstrated ability to deliver results in resource-constrained environments by maximizing existing tools, processes, and partnerships.
  • Proven ability to adapt and find effective solutions in ambiguous or rapidly changing situations.

Delight Customers

Build stronger relationships with internal and external customers.

  • Demonstrated commitment to understanding and exceeding the needs of internal and/or external customers.
  • Track record of building and maintaining strong, trust-based relationships that drive positive outcomes for all stakeholders.

Physical Requirements & Working Conditions

  • Required to wear personal protective equipment when applicable. 
  • Able to pass a respirator fit test and wear a respirator periodically.
  • Able to work in an office, lab, and manufacturing environment with chemicals, moving mechanical parts, and electrical hazards.