Liverpool, United Kingdom

Sarah Louise Hindley


 

Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 20(Granted Patents)


Company Filing History:


Years Active: 2017

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1 patent (USPTO):Explore Patents

Title: The Innovative Mind of Sarah Louise Hindley: A Journey through Patents and Collaborations

Introduction

Sarah Louise Hindley, a talented inventor based in Liverpool, GB, has made her mark in the field of material science through her innovative work with molybdenum compounds. With a singular patent to her name, her contributions exemplify the intersection of chemistry and technology.

Latest Patents

Hindley's notable patent is focused on "Molybdenum (IV) amide precursors and use thereof in atomic layer deposition." This patent details the structure of molybdenum (IV) amide complexes, which are instrumental in forming thin films through atomic layer deposition (ALD) techniques. The patented formula includes parameters for various alkyl groups, showcasing the complexity and versatility of her invention in advanced material applications.

Career Highlights

Currently working with Merck Patent GmbH, Sarah Louise Hindley is part of a dynamic team that drives innovation in chemical processes and material design. Her tenure at Merck has allowed her to contribute meaningful advancements in the application of molybdenum films, particularly in microelectronics and semiconductor manufacturing.

Collaborations

Hindley's work is further enhanced through her collaborations with esteemed colleagues such as Peter Nicholas Heys and Rajesh Odedra. These partnerships foster a collaborative environment where knowledge and skills can be shared, leading to groundbreaking results and further innovation in their respective fields.

Conclusion

Sarah Louise Hindley stands as a significant figure in the realm of invention, particularly within the domain of atomic layer deposition materials. Her contributions, highlighted by her innovative patent and collaborative work at Merck Patent GmbH, underscore the importance of teamwork and creativity in driving technological advancements. As the field progresses, Hindley’s work will undoubtedly continue to influence future developments in material science and engineering.

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