Overview:
We are looking for a dependable part-time laboratory safety monitor to be present during scheduled chemical processing sessions. The monitor does not perform any chemistry but may assist with characterization of samples.
Schedule: Mondays 8:00 AM – 2:00 PM (required); occasional Thursdays 7:30 AM – 10:00 AM
Location: CEI Shared Research Facility
Level: No advanced degree required; basic lab familiarity preferred
Start: Immediate
Key Responsibilities:
Be present in the lab for the duration of scheduled sessions
Complete a brief institutional safety training before the first session
Know the location of emergency supplies and basic emergency response steps
Sign the session attendance log
Requirements:
Reliable and punctual
Comfortable in a laboratory environment
Able to complete required safety training (provided and coordinated by the company)
No Experience Required Beyond Basic Lab Familiarity
Ideal Candidate:
A University of Washington student (graduate or undergraduate) already approved to work at WCET/CEI. The Monday block is a firm weekly requirement; Thursday sessions are occasional and scheduled with advance notice.
Ecellix is an Equal Opportunity Employer
NOTICE TO STAFFING AGENCIES AND SEARCH FIRMS
No unsolicited resumes submitted or candidate referrals by staffing agencies or search firms will be entertained.
Join Ecellix to gain hands-on experience in cutting-edge battery research and be part of a team driving innovation in advanced materials development.
Skills Required
- Reliable and punctual
- Comfortable working in a laboratory environment
- Able to complete required institutional safety training
- Basic laboratory familiarity
- Available Mondays from 8:00 AM to 2:00 PM
- Available for occasional Thursday sessions
- Approved to work at WCET/CEI, ideally as a University of Washington student
What We Do
Ecellix is a Seattle-based advanced battery technology company founded in 2018 to commercialize eCell, an ultra-high-capacity silicon-content anode material for next-generation lithium-ion batteries. Its technology is designed as a drop-in replacement for graphite, improving anode capacity, energy density, cycle life, and cost while integrating into existing manufacturing processes for electric vehicles, consumer electronics, and stationary energy-storage systems and broader clean-energy applications.



.png)





