Massy, France

Jairo Ivan Garnica Rodriguez


 

Average Co-Inventor Count = 5.0

ph-index = 1


Company Filing History:


Years Active: 2018

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1 patent (USPTO):Explore Patents

Title: **Jairo Ivan Garnica Rodriguez: Innovator in Microfluidics**

Introduction

Jairo Ivan Garnica Rodriguez, an inventive mind located in Massy, France, has made notable contributions to the field of microfluidics. His innovative work revolves around enhancing the efficiency of chemical processes through advanced droplet manipulation techniques.

Latest Patents

Rodriguez holds a patent for a groundbreaking method titled "Method for fusing or contacting reactor and reagent droplets in a microfluidic or millifluidic device." This invention outlines a process that allows for the effective interaction between reactor droplets and reagent droplets within a three-phase microfluidic system. By intricately timing the injection and merging of these droplets, Rodriguez’s method significantly improves the precision and efficiency of chemical reactions.

Career Highlights

Throughout his career, Jairo has worked with esteemed organizations such as Etablissements J. Soufflet and the Ecole Supérieure de Physique et de Chimie Industrielles de La Ville de Paris. His experiences in these institutions have provided him with a solid foundation to pursue innovative microfluidic solutions.

Collaborations

In his journey of innovation, Jairo has collaborated with talented individuals including Laurent Boitard and Antoine Serge Dominique Drevelle. These partnerships underscore the collaborative nature of research and development in the field, enabling the integration of diverse expertise to address complex challenges.

Conclusion

Jairo Ivan Garnica Rodriguez exemplifies the spirit of innovation within the microfluidics domain. His patent reflects a significant advancement in the manipulation of droplets, promising to influence various chemical and biological applications. His work not only highlights the importance of inventive approaches in science but also sets a precedent for future research in fluid dynamics technologies.

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