Diessen/Ammersee, Germany

Gunther Kunst


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 18(Granted Patents)


Company Filing History:


Years Active: 1989

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1 patent (USPTO):Explore Patents

Title: Gunther Kunst: Innovator in Electrolytic Deposition Technology

Introduction

Gunther Kunst is a notable inventor based in Diessen/Ammersee, Germany. He has made significant contributions to the field of electrolytic deposition, particularly through his innovative methods for measuring inhibitor concentrations in electrolytes. His work is essential for improving the efficiency and reliability of metal deposition processes.

Latest Patents

Gunther Kunst holds a patent for a method of measuring the effective inhibitor concentration during the electrolytic deposition of metals. This patent addresses the effectiveness of organic additives acting as inhibitors in aqueous electrolytes. The method involves supplying a partial stream of the electrolyte to a measuring cell equipped with at least three wire electrodes. By maintaining a measuring current and analyzing the cathode potential-time curve, the effective concentration of the inhibitor can be accurately determined. This technique is particularly useful in the electrorefining of copper and in measuring brighteners in metal electrodeposition.

Career Highlights

Gunther Kunst is associated with Norddeutsche Affinerie Aktiengesellschaft, where he has applied his expertise in electrolytic processes. His innovative approach has led to advancements in the field, enhancing the understanding and control of metal deposition techniques.

Collaborations

Throughout his career, Gunther Kunst has collaborated with notable colleagues, including Bernd E Langner and Peter Stantke. These collaborations have contributed to the development of effective methods and technologies in the industry.

Conclusion

Gunther Kunst's contributions to the field of electrolytic deposition through his patented methods demonstrate his commitment to innovation and excellence. His work continues to influence the industry, paving the way for more efficient metal deposition processes.

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