Bannewitz, Germany

Brigitte Schlobach




Average Co-Inventor Count = 6.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2010

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2 patents (USPTO):Explore Patents

Title: Brigitte Schlobach: Innovator in High-Temperature Superconductors

Introduction

Brigitte Schlobach is a prominent inventor based in Bannewitz, Germany. She has made significant contributions to the field of high-temperature superconductors, holding two patents that showcase her innovative approach to material production.

Latest Patents

Her latest patents include a process for the production of highly-textured, band-shaped high-temperature superconductors. This wet-chemical method improves the production of strip-shaped high-temperature superconductors with a substrate, enhancing the texturing and layer thickness of the superconductive layer. The process involves applying precursor solutions in layers, starting with a low or fluorine-free solution, followed by layers with increasing fluorine concentrations. Another patent details the formation of band-shaped high-temperature superconducting layers on a metal substrate, which includes a buffer layer made of zirconates and/or rare-earth oxides. This buffer layer is crucial for achieving the desired texturing, resulting in discrete reflexes during RHEED measurements.

Career Highlights

Brigitte Schlobach is associated with Zenergy Power GmbH, where she continues to advance her research and development in superconducting materials. Her work has positioned her as a key figure in the field, contributing to the understanding and application of high-temperature superconductors.

Collaborations

She collaborates with notable colleagues, including Kerstin Knoth and Martina Falter, who share her commitment to innovation in superconducting technologies.

Conclusion

Brigitte Schlobach's contributions to high-temperature superconductors reflect her dedication to advancing material science. Her innovative patents and collaborative efforts continue to influence the field significantly.

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