Bologna, Italy

Wiebke Wunderlich


Average Co-Inventor Count = 3.3

ph-index = 4

Forward Citations = 42(Granted Patents)


Location History:

  • Bickenbach, DE (2002 - 2004)
  • Bologna, IT (2004 - 2011)

Company Filing History:


Years Active: 2002-2011

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15 patents (USPTO):Explore Patents

Title: Wiebke Wunderlich: Innovator in Polymer Chemistry

Introduction

Wiebke Wunderlich is a prominent inventor based in Bologna, Italy. She has made significant contributions to the field of polymer chemistry, holding a total of 15 patents. Her work focuses on developing innovative compounds that serve as radical polymerization initiators.

Latest Patents

Wunderlich's latest patents include groundbreaking inventions such as "N-alkoxy-4, 4-dioxy-polyalkyl-piperidines as radical polymerization initiators." This invention relates to specific glycidyl or carbonyl functional N-alkoxy-4,4-dioxy-polyalkyl-piperidine compounds that form open chain or cyclic ketal structures. The polymerizable composition comprises at least one ethylenically unsaturated monomer and a nitroxide initiator compound. Another notable patent is "N-alkoxy-4,4-dioxy-polyalkyl-piperidine compounds, their corresponding n-oxides and controlled radical polymerization therewith." This invention focuses on selected piperidine derivatives that are substituted in the 4 position by two oxygen atoms, facilitating controlled polymerization processes.

Career Highlights

Wiebke Wunderlich is currently employed at Ciba Specialty Chemicals Corporation, where she continues to advance her research in polymer chemistry. Her innovative work has positioned her as a key figure in the development of new polymerization techniques.

Collaborations

Wunderlich collaborates with esteemed colleagues such as Francesco Fuso and Rudolf Pfaendner, contributing to a dynamic research environment that fosters innovation.

Conclusion

Wiebke Wunderlich's contributions to polymer chemistry through her patents and collaborative efforts highlight her role as a leading inventor in the field. Her work continues to influence advancements in radical polymerization and related technologies.

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