Company Filing History:
Years Active: 2010-2022
Title: Enoch Y Park: Innovator in Electrochemical Measurement and Riboflavin Production
Introduction
Enoch Y Park is a notable inventor based in Shizuoka, Japan. He has made significant contributions to the fields of electrochemical measurement and biotechnological production processes. With a total of two patents to his name, Park's work showcases innovative approaches to both measurement technology and sustainable production methods.
Latest Patents
One of Park's latest patents is an electrode designed for electrochemical measurement. This electrode is specifically tailored for detecting or quantitatively determining target substances. It features a complex supported on its surface, which includes a probe for the target substance, a nitrogen and sulfur-doped quantum dot that binds to the probe, and a conductive polymer nanowire embedded with a metal nanoparticle. Another significant patent involves a method of producing riboflavin. This method utilizes riboflavin-producing microbes cultured in a medium that employs plant or animal oils as a carbon source. The process allows for high yield and increased production rates while effectively utilizing waste oils, thus minimizing operational complexities.
Career Highlights
Throughout his career, Enoch Y Park has worked with esteemed institutions such as Shizuoka University and Mizusawa Industrial Chemicals, Ltd. His experience in these organizations has contributed to his expertise in both academic and industrial settings.
Collaborations
Park has collaborated with notable colleagues, including Kenshin Takemura and Ankan Dutta Chowdhury. These partnerships have likely enriched his research and development efforts.
Conclusion
Enoch Y Park stands out as an innovative inventor whose work in electrochemical measurement and riboflavin production reflects a commitment to advancing technology and sustainability. His contributions continue to influence the fields he engages with, showcasing the importance of innovation in addressing contemporary challenges.