Mitterteich, Germany

Denise Trapp


Average Co-Inventor Count = 2.0

ph-index = 1


Location History:

  • Mittereich, DE (2010)
  • Mitterteich, DE (2012)

Company Filing History:


Years Active: 2010-2012

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2 patents (USPTO):Explore Patents

Title: Innovations by Denise Trapp in Antireflection Coatings

Introduction

Denise Trapp is a notable inventor based in Mitterteich, Germany. She has made significant contributions to the field of materials science, particularly in the development of antireflection coatings for borosilicate glass. With two patents to her name, her work has implications for various applications in optics and glass manufacturing.

Latest Patents

Denise Trapp's latest patents focus on processes for producing wipe-proof antireflection layers on borosilicate glass bodies. The first patent describes a method where the borosilicate glass body is coated with a solution containing 1-6% by weight of HCl, 0.5-7% by weight of SiOsol, 0.5-5% by weight of water, and 85-98% by weight of a volatile water-soluble organic solvent. The composition of the borosilicate glass body includes 63-76% SiO, 11-20% BO, 1-9% AlO, and various other oxides. The second patent outlines a method for creating an adherent and wipe-resistant porous SiO-containing antireflection coating using a similar coating solution.

Career Highlights

Denise Trapp is currently employed at Schott AG, a leading company in the glass and optics industry. Her work at Schott AG has allowed her to innovate and refine processes that enhance the performance of glass products. Her expertise in antireflection coatings has positioned her as a key contributor to advancements in optical technologies.

Collaborations

Denise collaborates with Stephan Tratzky, a fellow professional in her field. Their partnership has fostered a productive environment for research and development, leading to innovative solutions in glass coatings.

Conclusion

Denise Trapp's contributions to the field of antireflection coatings exemplify the impact of innovative thinking in materials science. Her patents reflect a commitment to enhancing the functionality of borosilicate glass, paving the way for future advancements in optical applications.

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