Lodz, Poland

Zbigniew Lewandowski


Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 6(Granted Patents)


Company Filing History:


Years Active: 2001

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1 patent (USPTO):Explore Patents

Title: The Innovations of Zbigniew Lewandowski: A Focus on Cellulose Enhancement

Introduction: Zbigniew Lewandowski is a notable inventor based in Lodz, Poland, recognized for his contribution to improving cellulose materials through innovative methods. His work has garnered attention in the field of surface chemistry, particularly in enhancing the properties of cellulose shaped bodies.

Latest Patents: Lewandowski holds a patent for the "Use of a Linear Synthetic Polymer to Improve the Properties of a Cellulose Shaped Body Derived from a Tertiary Amine Oxide Process." This invention focuses on employing a linear synthetic polymer with a molecular weight ranging from 5,10 to 1,10, which enhances the strength of cellulose, reduces its fibrillation tendency, and regulates water absorption properties. The linear synthetic polymer proposed in this invention can be a polyalkylene, a polyalkylene glycol, or polyacrylate, among others, indicating a diverse application of chemical compounds in improving cellulose materials.

Career Highlights: Zbigniew Lewandowski's professional journey has led him to work at Akzo Nobel Surface Chemistry Ab, a company recognized for its commitment to surface chemistry innovations. His patent reflects his deep understanding and expertise in this area, setting a benchmark for future research and innovation in cellulose applications.

Collaborations: Throughout his career, Lewandowski has collaborated with esteemed colleagues, including Anders Cassel and Bogumil Laszkiewicz. These collaborations have not only enhanced his research capabilities but have also contributed to advancements in the field of surface chemistry.

Conclusion: Zbigniew Lewandowski's contributions to the field of cellulose materials through his innovative patent demonstrate the impactful role of inventors in developing sustainable and improved materials. As the industry continues to evolve, Lewandowski's work serves as a foundation for future innovations in this essential area of research.

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