Heusden-Zolder, Belgium

Anita Thijs


Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 3(Granted Patents)


Company Filing History:


Years Active: 1986

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2 patents (USPTO):

Title: Anita Thijs: Innovator in Porous Materials

Introduction

Anita Thijs is a notable inventor based in Heusden-Zolder, Belgium. She has made significant contributions to the field of materials science, particularly in the development of methods for manipulating the properties of porous solids. With a total of 2 patents, her work has implications for various applications, including gas adsorption and encapsulation.

Latest Patents

Anita Thijs holds two recent patents that showcase her innovative approaches. The first patent is titled "Method for a controlled change of the pore size in solids." This method involves treating porous materials, such as zeolites or clays, with chemisorbable materials like diborane to control the size of pore entrances. This treatment allows for selective adsorption, enabling smaller molecules to enter while preventing larger ones from doing so. The second patent, "Method of encapsulating gases, vapors, complexes and ions in solids," describes a process where a clay material from the polygorskite group is degassed and then contacted with a gas to be adsorbed. The clay is subsequently heated to encapsulate the gas within its structure, enhancing its utility in various applications.

Career Highlights

Anita Thijs is affiliated with the European Atomic Energy Community (Euratom), where she applies her expertise in materials science. Her work has been instrumental in advancing the understanding of porous materials and their applications in energy and environmental technologies.

Collaborations

Anita has collaborated with esteemed colleagues, including Etienne F Vansant and Paul J De Bievre. These partnerships have contributed to her research and the successful development of her patented methods.

Conclusion

Anita Thijs is a pioneering inventor whose work in the field of porous materials has led to innovative methods for gas adsorption and encapsulation. Her contributions continue to influence advancements in materials science and related industries.

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