Weil der Stadt, Germany

Annette Fuchs


 

Average Co-Inventor Count = 4.8

ph-index = 1

Forward Citations = 26(Granted Patents)


Company Filing History:


Years Active: 2001-2016

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2 patents (USPTO):Explore Patents

Title: The Innovative Journey of Annette Fuchs

Introduction

Annette Fuchs is an accomplished inventor based in Weil der Stadt, Germany. With a remarkable portfolio, she holds two significant patents that contribute to advancements in the field of material science, particularly in ion conductors.

Latest Patents

Fuchs's latest patents focus on innovative materials for ion conduction. The first patent involves alkaline single ion conductors with high conductivity and transference number. This method of producing an alkaline single ion conductor includes providing a hydrocarbon oligomer or polymer with immobilized acidic substituent groups. It ensures high conductivity by solvating the product in an aprotic polar solvent to achieve a specific solvent uptake, demonstrating impressive conductivity levels at room temperature.

The second patent addresses proton conductors that boast thermal stability from -50°C to 400°C while maintaining good proton conductivities. These proton conductors consist of a blend of acid and nonaqueous amphoteric material. This invention also includes membranes for use in electrochromic cells, secondary batteries, and electrochromic displays, showcasing Fuchs's creativity and insight into practical applications of her research.

Career Highlights

Throughout her career, Annette Fuchs has played a vital role in the field of research and technology. She has worked with prestigious organizations, including Aventis Research & Technology GmbH & Co. KG and the Max Planck Society for the Advancement of Science. Her experience at these institutions has allowed her to contribute significantly to various advanced projects and R&D initiatives.

Collaborations

Fuchs has collaborated with respected professionals in her field, including Klaus-Dieter Kreuer and Joachim Maier. These collaborations have fostered a productive environment for innovation, resulting in successful projects that push the boundaries of existing technologies.

Conclusion

Annette Fuchs continues to be a pioneering force in the world of ion conduction materials. Her patents and collaborations reveal her dedication to scientific advancement and innovation. As she progresses in her career, her contributions will likely have a lasting impact on numerous technological applications and inspire future generations of inventors.

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