Location History:
- Abingdon, GB (1980)
- Abingdon, Oxfordshire, GB (1981)
Company Filing History:
Years Active: 1980-1981
Title: The Innovative Mind of David J Mazey: A Pioneer in Synthetic Diamond Technology
Introduction: David J Mazey is an esteemed inventor based in Abingdon, Oxfordshire, GB. With a focus on advancing materials science, he has made significant contributions to the field, particularly in the growth of synthetic diamonds. His innovative approach and dedicated research have led to key advancements in diamond crystal growth technologies.
Latest Patents: David holds a notable patent titled "Growth of synthetic diamonds having altered electrical conductivity." This invention details a method for growing diamond crystals by bombarding them with a flux of carbon ions. This process utilizes energy sufficient to penetrate the diamond crystal and promotes internal crystal growth while maintaining the diamond structure at temperatures above 400°C but below the graphitization threshold.
Career Highlights: Throughout his career, David has been at the forefront of synthetic diamond research, showcasing his ability to push the boundaries of existing technology. His patent reflects not only his innovative thinking but also his commitment to solving complex problems within materials science.
Collaborations: David has collaborated with esteemed colleagues, including Richard S Nelson and John A Hudson. Their combined expertise likely contributes to a rich exchange of ideas and enhances the development of cutting-edge technologies in diamond growth and conductivity.
Conclusion: David J Mazey's contributions to the field of synthetic diamonds represent a significant advancement in material science. His inventive methods for creating diamonds with altered electrical properties not only showcase his ingenuity but also pave the way for future research and applications in various industries. Through collaboration and innovation, David continues to inspire the next generation of inventors and researchers in the realm of synthetic materials.