Jülich, Germany

Frank Tietz

USPTO Granted Patents = 12 

 

 

Average Co-Inventor Count = 3.6

ph-index = 5

Forward Citations = 43(Granted Patents)


Location History:

  • Jülich, DE (2004 - 2009)
  • Julich, DE (2000 - 2013)
  • Juelich, DE (2013)
  • Monschau, DE (2019 - 2022)

Company Filing History:


Years Active: 2000-2022

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12 patents (USPTO):Explore Patents

Title: The Innovative Contributions of Frank Tietz

Introduction

Frank Tietz, a notable inventor based in Jülich, Germany, has made significant strides in the field of battery technology. With a portfolio that boasts 12 patents, his innovations focus primarily on solid-state batteries, paving the way for advancements in energy storage solutions. His work merges scientific rigor with practical applications, demonstrating a commitment to enhancing battery performance and sustainability.

Latest Patents

Among his latest contributions to the industry are two influential patents. The first, titled "Solid state battery and method for producing same," describes a method for producing an electrode for solid-state batteries. This method outlines the use of a multilayer solid ceramic electrolyte, necessitating a careful balance of dense and porous layers. It emphasizes achieving high total ion conductivity and involves the introduction of an aqueous infiltration fluid with organic additives, followed by thermal treatment to synthesize the electrode material.

The second patent, "Electrolyte material having a NASICON structure for solid-state sodium ion batteries and method for the production thereof," relates to creating an electrolyte material based on a NaScZr(SiO)(PO) compound. Tietz's method involves an intricate preparation process, including an acidic aqueous solution with various nitrates, acetates, or carbonates, leading to complex zirconium dioxide phosphates, culminating in a dried and calcined mixture that exhibits desirable properties suitable for sodium-ion battery applications.

Career Highlights

Frank Tietz has been pivotal in the advancement of battery technology through his tenure at esteemed research institutions, notably Forschungszentrum Jülich GmbH. His experience has equipped him with a broad understanding of materials science and electrical engineering, allowing him to innovate effectively within the rapidly evolving field of energy storage solutions.

Collaborations

Collaboration has been a key element of Tietz's success. He has worked alongside talented colleagues, including Qianli Ma and Olivier Guillon, who share his passion for pioneering work in material development and solid-state battery technologies. This teamwork has not only enriched his projects but also fostered an environment of shared ideas and mutual growth in the realm of research.

Conclusion

Frank Tietz's contributions to the field of solid-state battery technology are noteworthy, marked by his innovative patents and collaborative efforts within respected organizations. Through his inventions, he is helping to shape the future of energy storage, aiming for more efficient and sustainable technologies. As the demand for advanced batteries continues to grow, Tietz's work is set to play a crucial role in meeting the challenges ahead.

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