Champaign, IL, United States of America

Scott R White

This inventor holds 38 USPTO granted patents and 5 published patent applications, primarily in Self-Healing Materials. Top assignee: University of Illinois. Active years: 1998-2025.

USPTO Granted Patents = 38 

% Patents Active = 92.1

Average Co-Inventor Count = 4.4

ph-index = 10

Forward Citations = 384(Granted Patents)


Company Filing History:


Years Active: 1998-2025

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Areas of Expertise:
Self-Healing Materials
3D Printing
Corrosion Inhibiting Coatings
Thermoset Polymers
Microvascular Networks
Thermally Degradable Fibers
Autonomic Damage Indication
Mechanical Damage Detection
Frontal Polymerization
Polydopamine-Coated Capsules
Microcapillary Networks
Multifunctional Composites
38 patents (USPTO):Explore Patents

Title: Innovations and Contributions of Scott R. White in Corrosion Inhibition and Material Science

Introduction

Scott R. White, based in Champaign, Illinois, is an accomplished inventor with an impressive portfolio consisting of 37 patents. His work primarily focuses on innovations in materials science, particularly in corrosion inhibition and the development of partially degradable fibers. His cutting-edge research underscores the intersection of environmental sustainability and engineering.

Latest Patents

Among Scott R. White's latest contributions is a pioneering patent for corrosion inhibiting self-protecting coatings. Traditional protective coatings rely on environmentally harmful agents and toxic solvents, which pose significant risks. White's inventive approach employs lawsone (2-hydroxy-1,4-napthoquinone) combined with an environmentally benign epoxy coating. This novel solution provides an eco-friendly alternative to standard protective coatings by utilizing microencapsulated lawsone that remains inactive until a substrate is damaged. Upon release, it effectively deposits onto steel substrates, leading to an impressive 60% corrosion inhibition in neutral salt water solutions.

Another significant patent addresses the development of partially degradable fibers and microvascular materials derived from these fibers. These fibers feature a thermally degradable polymeric core coated with a polymeric matrix that includes poly(hydroxy-alkanoate) and metal constituents. The innovative design facilitates the creation of microvascular systems with fluidic channels, opening new avenues in material applications.

Career Highlights

Scott R. White's academic and professional journey includes significant contributions at the University of Illinois and the Board of Trustees of the University of Illinois. His association with these prestigious institutions has enabled him to harness and develop his innovative ideas into patentable technologies.

Collaborations

Throughout his career, Scott has collaborated with esteemed colleagues, including Nancy R. Sottos and Jeffrey S. Moore. These collaborations have fostered a productive environment where transformative ideas in materials science can thrive, enhancing the practical application of their collective research.

Conclusion

Scott R. White stands out as a pioneering inventor whose work has made substantial contributions to the fields of corrosion prevention and sustainable materials. His innovative solutions not only address pressing environmental challenges but also provide a scientific foundation for future advancements in materials science. With 37 patents to his name, White continues to inspire the next generation of inventors and researchers.

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