This inventor holds 1 USPTO granted patent and 1 EPO patent. Top assignee: Millennium Inorganic Chemicals, Inc.. Active years: 2006.
Company Filing History:
Years Active: 2006
Title: BillieJo Monk: Innovator in Nano-structured Particles
Introduction
BillieJo Monk is an accomplished inventor based in New Providence, PA (US). He has made significant contributions to the field of materials science, particularly through his innovative work on nano-structured particles. His research focuses on enhancing thermal stability in various applications.
Latest Patents
BillieJo Monk holds 1 patent for his invention titled "Nano-structured particles with high thermal stability." This invention relates to a composition comprising nano-structured metal oxide particles, specifically zirconia, along with at least one stabilizing agent. The method to produce these nano-structured particles involves preparing a base solution and a nanoparticle precursor solution, which are then combined at a final pH of 7 or greater to precipitate a colloidal hydrous oxide. This colloidal hydrous oxide is treated with stabilizing agents such as silicates, phosphates, or aluminum phosphates and subsequently dried. The resulting nano-structured particles exhibit high thermal stability, making them particularly advantageous for use as catalysts or catalyst supports in high-temperature applications.
Career Highlights
BillieJo Monk has established himself as a key figure in the field of materials science. His work at Millennium Inorganic Chemicals, Inc. has allowed him to explore innovative solutions that address industry challenges. His dedication to research and development has led to advancements in the production of thermally stable nano-structured particles.
Collaborations
BillieJo has collaborated with notable coworkers, including Corinne Lehaut and Guoyi Fu. Their combined expertise has contributed to the success of various projects within the company.
Conclusion
BillieJo Monk's innovative work in the development of nano-structured particles with high thermal stability showcases his commitment to advancing materials science. His contributions have the potential to impact various industries, particularly in applications requiring high-temperature performance.