Company Filing History:
Years Active: 2008-2009
Title: The Innovations of Jonathan W Woo: Pioneering Catalytic Efficiency
Introduction
Jonathan W Woo, a distinguished inventor based in San Jose, California, has made significant contributions to the field of catalysis with a portfolio of four patents. His innovative work focuses on enhancing catalytic efficiency through the unique properties of platinum nanoparticles and various modeling techniques.
Latest Patents
One of Jonathan's notable patents pertains to "Supported Catalysts Having Platinum Particles." This invention highlights how the catalytic efficiency of supported catalysts containing metal nanoparticles is closely linked to the chemical softness at their surfaces. Specifically, platinum nanoparticles with average surface softness values ranging from 0.07198 to 0.09247 exhibit high catalytic efficiency for CO oxidation, achieving a turn-over frequency (TOF) of 0.03062 s or higher. It is noteworthy that platinum nanoparticles with tighter average surface softness ranges demonstrate even greater catalytic efficiency, with TOF values reaching 0.06554 s for those between 0.08031 and 0.08679.
Another significant patent is the "Method of Estimating Chemical Reactivity of Nanoparticles." This innovation emphasizes the relationship between the chemical softness of metal nanoparticles and their catalytic efficiency. By utilizing Density Functional Theory (DFT) modeling, extended Embedded Atom Method (EAM) modeling, and continuum modeling, Jonathan developed a method to assess the chemical softness based on nanoparticle size and shape. This involves modeling nanoparticles to obtain atomic energy densities and deriving the surface chemical softness values, ultimately leading to enhanced understanding and performance of these catalysts.
Career Highlights
Jonathan W Woo currently works at Nanostellar, Inc., where he applies his expertise in catalytic systems and materials science. His role at this innovative company allows him to further develop and explore groundbreaking technologies in the field of catalysis.
Collaborations
Collaboration is a cornerstone of innovation, and Jonathan often works alongside talented coworkers such as Jifei Jia and Xianghong Hao. Together, they contribute to advancing the field of catalysis through their combined knowledge and expertise.
Conclusion
Jonathan W Woo’s innovative patents and collaborative work exemplify the importance of research and development in catalysis. His focus on the properties of platinum nanoparticles and modeling techniques continues to push the boundaries of catalytic efficiency, promising to make a significant impact on the industry. As he progresses in his career, Jonathan remains a pivotal figure in the exploration of new materials and methods that can transform our approach to catalysis.