Vienna, Austria

Eva-Kathrin Ehmoser

USPTO Granted Patents = 1 

Average Co-Inventor Count = 3.0

ph-index = 1


Company Filing History:


Years Active: 2023

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1 patent (USPTO):Explore Patents

Title: Eva-Kathrin Ehmoser: Innovator in Vesicular Systems

Introduction

Eva-Kathrin Ehmoser is a prominent inventor based in Vienna, Austria. She has made significant contributions to the field of vesicular systems, showcasing her innovative spirit and dedication to scientific advancement. Her work has implications in various applications, particularly in the realm of technology and research.

Latest Patents

Eva-Kathrin Ehmoser holds a patent for a "Vesicular system and uses thereof." This patent describes a vesicular system that includes a surface with a vesicle immobilized on it. The immobilized vesicle features a circumferential membrane made of an amphiphilic polymer. The vesicle is attached to the surface through a molecule with a non-polar moiety, which consists of a main chain of 3 to about 30 carbon atoms and up to 12 heteroatoms selected from Si, O, S, and Se. The coupling of the molecule to the surface can occur via either a covalent or non-covalent bond, with a portion of the non-polar moiety integrated into the circumferential membrane. This innovative approach opens new avenues for research and application in various fields.

Career Highlights

Eva-Kathrin Ehmoser is affiliated with the Agency for Science, Technology and Research, where she continues to push the boundaries of innovation. Her work has garnered attention for its potential impact on technology and science. With a focus on developing advanced vesicular systems, she has established herself as a key figure in her field.

Collaborations

Throughout her career, Eva-Kathrin has collaborated with notable colleagues, including Madhavan Nallani and Madanagopal Kunnavakkam. These partnerships have contributed to her success and the advancement of her research.

Conclusion

Eva-Kathrin Ehmoser exemplifies the spirit of innovation through her work on vesicular systems. Her contributions to the field are significant and continue to inspire future advancements in technology and research.

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