Bordeaux, France

A Nicholas Parra-Vasquez


Average Co-Inventor Count = 6.4

ph-index = 1

Forward Citations = 2(Granted Patents)


Company Filing History:


Years Active: 2013-2017

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2 patents (USPTO):Explore Patents

Title: A Nicholas Parra-Vasquez: Innovator in Graphene and Fullerene Technologies

Introduction: A Nicholas Parra-Vasquez, an accomplished inventor based in Bordeaux, France, has made significant contributions to the fields of materials science and nanotechnology. With two patents under his name, Parra-Vasquez is at the forefront of developing methods for dissolving and manipulating carbon materials, particularly graphite and graphene.

Latest Patents: Parra-Vasquez's latest innovations include two noteworthy patents that showcase his expertise in processing carbon materials. The first patent details methods for dissolving graphite, graphite oxide, and various forms of graphene in superacid solutions. This process allows for the production of both isotropic and liquid crystalline solutions depending on the concentration of the carbon material. The superacid facilitates the exfoliation of carbon materials, resulting in isolated particles that can be further employed in the creation of fibers, films, and functionalized materials.

The second patent focuses on a scalable method for solubilizing and separating large fullerenes based on their size and the strength of the acid used. This innovative approach enables the efficient processing of fullerene starting materials, which involves mixing them with concentrated sulfuric acid to yield a dispersion that solubilizes a portion of the larger fullerenes.

Career Highlights: A Nicholas Parra-Vasquez is affiliated with William Marsh Rice University, where he actively contributes to the advancement of research in nanotechnology. His work has been instrumental in providing new insights into the behavior of carbon materials in various solvent environments, leading to potential applications in diverse industries.

Collaborations: Throughout his career, Parra-Vasquez has collaborated with esteemed colleagues, including Matteo Pasquali and James Mitchell Tour. These collaborations have fostered an environment of innovation and have further supported research initiatives that leverage the unique properties of carbon-based materials.

Conclusion: A Nicholas Parra-Vasquez is a pivotal figure in the realm of carbon material technologies. His innovative methods for dissolving and manipulating graphite and fullerene materials underscore his commitment to advancing scientific knowledge in nanotechnology. As he continues to collaborate with leading researchers and inventors, the implications of his work are poised to influence various applications in engineering, materials science, and beyond.

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