This inventor holds 1 USPTO granted patent and 2 published patent applications. Top assignee: Phillips 66 Company. Active years: 2013.
Company Filing History:
Years Active: 2013
Title: The Innovative Contributions of Daniel H. Irvin
Introduction
Daniel H. Irvin is a notable inventor based in Fulshear, Texas. He has made significant contributions to the field of battery technology through his innovative processes. His work focuses on the development of advanced materials that enhance battery performance and efficiency.
Latest Patents
Irvin holds a patent for a process aimed at making fluorinated lithium vanadium polyanion powders for batteries. This process produces a lithium vanadium fluorophosphate or a carbon-containing lithium vanadium fluorophosphate. The method involves forming a solution-suspension of precursors that contain vanadium, which is then reduced. The solution-suspension is heated in an inert environment to synthesize LiVPOF, while also oxidizing carbon-residue-forming materials. The resulting dry powder is subsequently heated to a higher temperature to drive crystallization. This innovative product includes carbon for conductivity, is created using low-cost precursors, and maintains a small particle size without the need for milling.
Career Highlights
Irvin is currently associated with Phillips 66 Company, where he continues to work on advancements in battery technology. His expertise in the field has led to the development of processes that do not require the addition of carbon black, graphite, or other forms of carbon to achieve the necessary conductivity for battery applications.
Collaborations
Irvin collaborates with talented individuals such as David W. Westphal and Zhenhua Mao. Their combined efforts contribute to the innovative projects at Phillips 66 Company.
Conclusion
Daniel H. Irvin's contributions to battery technology through his patented processes demonstrate his commitment to innovation. His work not only enhances the performance of batteries but also emphasizes cost-effectiveness and efficiency in material production.
