Location History:
- Osaka, JP (2013 - 2018)
- Suita, JP (2019)
Company Filing History:
Years Active: 2013-2019
Title: Teruo Komatsu: Innovator in Nanoparticle Production
Introduction
Teruo Komatsu is a prominent inventor based in Osaka, Japan, known for his significant contributions to the field of nanoparticle production. With a total of eight patents to his name, he has developed innovative methods and devices that enhance the efficiency and quality of nanoparticle synthesis.
Latest Patents
Among his latest patents is a groundbreaking nanoparticle production method and device. This apparatus allows for the continuous mass production of nanoparticles with a uniform particle diameter, enabling precise control over the generation time. The design includes reaction tubes filled with a solvent that matches the ingredient liquid used in nanoparticle production. It features a heating apparatus that regulates the temperature to the synthesis level, inflow ends for ingredient liquid supply, and rotors that create spiral flows to mix the ingredients effectively. Additionally, he has developed an oxygen source-containing composite nanometal paste, which includes composite nanometal particles with an organic coating around a silver core. This paste is designed to facilitate pyrolysis at specific temperatures, enhancing the production process.
Career Highlights
Teruo Komatsu has worked with notable companies such as Applied Nanoparticle Laboratory Corporation and Shindengen Electric Manufacturing Company Limited. His experience in these organizations has contributed to his expertise in nanoparticle technology and production methods.
Collaborations
He has collaborated with talented individuals in his field, including Ryo Matsubayashi and Yoshinori Shibata. These partnerships have fostered innovation and advancement in nanoparticle research and applications.
Conclusion
Teruo Komatsu's work in nanoparticle production exemplifies the intersection of innovation and practical application in technology. His patents and collaborations continue to influence the field, paving the way for future advancements in nanoparticle synthesis.