Senior Manager, Battery R&D
Blue Current
| Company | Blue Current |
| Category | Science & Research |
| Location | Hayward CA |
| Remote | On-site (inferred) |
| Employment | Not stated |
| Level | Manager |
| Salary | Not stated by the employer |
| Posted | 20 Mar 2026 |
| Last verified | 11 Aug 2026 |
| Source | Employer ATS (greenhouse) |
Description
About Blue Current
Blue Current (the “Company”) is the industry leader in the development of silicon solid state batteries. Free of flammable liquid electrolytes, Blue Current’s fully dry, inherently safe batteries significantly reduce risks to human and environmental health while providing a higher-performance alternative to traditional lithium-ion batteries. Blue Current’s silicon-based platform is highly adaptable, enabling a cost-effective solution for both the mobility and stationary storage markets. Blue Current’s team works out of its state-of-the-art headquarters and pilot line facility in Hayward, California. To learn more about Blue Current, Inc., visit http://bluecurrent.com. Position Summary
Blue Current is seeking a highly experienced and hands-on Senior Manager, Battery R&D to define and lead the development of cathode technologies optimized for stationary energy storage applications. This role is pivotal in translating cathode materials and electrode innovations into robust, scalable solutions that meet performance, cost, safety, and lifetime requirements. The ideal candidate combines deep cathode and electrode expertise with strong people and program leadership, enabling effective execution, data-driven decision-making, and effective risk management. This leader will collaborate closely with electrolyte, anode, cell engineering, and manufacturing teams to accelerate technology readiness and ensure a clear, reliable path to commercialization.
Essential Functions & Responsibilities
Define and lead the cathode development strategy, aligned with product performance, cost, safety, and lifetime requirements.
Manage end-to-end cathode R&D projects, from materials selection and electrode design through cell validation and manufacturing scale-up.
Lead development of cathode chemistries optimized for low cost, long cycle life, safety, and calendar life.
Mentor and manage a high-performing cathode development team, setting technical direction, priorities, and performance goals.
Collaborate closely with electrolyte, anode, cell engineering and manufacturing teams to ensure robust cell and product designs.
Own cathode-related technical roadmaps, milestones, and risk assessments, ensuring timely execution against commercialization goals.
Oversee transition of cathode materials and electrodes from laboratory to pilot and production scale, ensuring quality, yield, and cost targets are met.
Evaluate external technologies, suppliers, and research partnerships to accelerate development and strengthen the cathode technology portfolio.
Support intellectual property generation through invention disclosures, patent filings, and high-quality technical documentation.
Communicate technical progress, trade-offs, and development status to senior leadership and cross-functional stakeholders.
Uphold strong safety, documentation, and data integrity practices
Minimum Qualifications
Education
Ph.D. or M.S. in Materials Science, Chemistry, Chemical Engineering, Electrochemistry, or a related field
Experience
8+ years of experience in battery materials
Hands-on experience with solid-state battery technologies, including cathode design, integration, and interface optimization
Proven experience leading cathode development programs from early research through scale-up and commercialization
Demonstrated experience working with solid electrolytes such as sulfides, oxides, and polymer electrolytes
Proven ability to build and lead teams in dynamic startup environments
Skills & Knowledge
Strong understanding of cathode–electrolyte interfacial phenomena, especially in solid-state batteries
Deep expertise in cathode active materials such as NMC, LFP, LMFP, and LMO
Expertise in cathode formulation, electrode processing, degradation mechanisms, and performance optimization for long cycle life and safety
Strong knowledge of electrochemical