Denise Lamoreaux

Senior Recruiter at Group14 Technology

Denise Lamoreaux has extensive work experience in recruitment and human resources. Denise is currently a Senior Recruiter at Group14 Technologies, a position they have held since June 2023. From August 2021 to November 2022, Denise worked as a Recruiter at Stripe, where they focused on senior-level IC and management recruitment in the Communications & Marketing field within the FinTech industry. Prior to their role at Stripe, Denise spent six years at Amazon, where they served as a Recruiter. During their time at Amazon, they acted as both an FLC and Client Lead Recruiter, supporting L4-L7 corporate and field roles across two global organizations. Denise'sexperience at Amazon included various focus areas such as Amazon Worldwide Operations, Amazon Advertising, Prime Now, Environmental Health & Safety, Global Sales, International Expansion, AdTech, and Twitch. Before joining Amazon, Denise worked at RLH Corporation as a Human Resources Generalist from December 2012 to February 2015, and as a Sales Coordinator from September 2011 to December 2012. Denise also gained experience as a Sales and Marketing Coordinator and intern at Great Wolf Lodge from June 2010 to September 2011.

Denise Lamoreaux obtained their Bachelor's degree in Business Administration, with a focus on Management and Operations, from the WSU Carson College of Business. Denise pursued their studies from 2006 to 2010.

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Seattle, United States

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Group14 Technology

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The future is silicon. Anodes must improve and silicon has the most potential. Nano-scale silicon provides the best combination of capacity and power, but still not sufficient cycle life and nano-scale production approaches remain expensive. Group14 has applied deep materials research experience to develop a new, low-cost approach to nano-scale silicon production. Our nano-scale silicon has high purity, high capacity, good power, and good cycle life. We use its unique high performance carbon engineering abilities to create cohesive silicon-carbon nanocomposites that dramatically outperform traditional carbon coated silicons.


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51-200

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