Paris, France

Benoit Laborie

USPTO Granted Patents = 1 

Average Co-Inventor Count = 5.0

ph-index = 1


Company Filing History:


Years Active: 2023

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1 patent (USPTO):Explore Patents

Title: **Benoit Laborie: Innovator in Nanoporous Carbon Membrane Technology**

Introduction

Benoit Laborie, an accomplished inventor based in Paris, France, has made significant contributions to the field of material science through his innovative work on nanoporous carbon membranes. His research focuses on the separation of aqueous and organic mixtures, a crucial process in various industries.

Latest Patents

Laborie holds a patent for the "Use of nanoporous carbon membranes for separating aqueous/organic mixtures." This invention relates to the extraction of organic compounds from mixtures with water, using nanoporous carbon membranes. The technology can be applied in areas such as the drying of alcohols or alkanes, showcasing its versatility and importance in improving separation processes.

Career Highlights

Throughout his career, Benoit Laborie has been associated with prestigious institutions, including Paris Sciences et Lettres and Université Paris Cité. His expertise in nanoporous materials and separation techniques has positioned him as a valuable asset in the field of chemical engineering and material science.

Collaborations

Laborie has collaborated with prominent researchers, such as Lyderic Bocquet and Alessandro Siria. These partnerships have enhanced his research outcomes and contributed to the advancement of technologies within his area of specialization.

Conclusion

Benoit Laborie's contributions to the development of nanoporous carbon membranes underline the importance of innovation in addressing complex industrial challenges. His patent not only highlights his inventive capabilities but also marks a significant step forward in the field of separation technologies. As research in this domain progresses, Laborie's work will continue to play a pivotal role in enhancing our understanding and application of nanoporous materials.

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