Long Eaton, United Kingdom

Geoffrey David Wilcox


Average Co-Inventor Count = 4.0

ph-index = 1


Company Filing History:


Years Active: 2020

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1 patent (USPTO):Explore Patents

Title: The Innovative Mind of Geoffrey David Wilcox

Introduction

Geoffrey David Wilcox, hailing from Long Eaton, GB, is a distinguished inventor recognized for his contributions to the field of nanotechnology. His innovative spirit has led to the development of a unique solution aimed at mitigating the growth of metallic crystalline structures, particularly in electronic devices.

Latest Patents

Among his notable achievements, Geoffrey holds a patent titled "Conformal coating, composition and method for the mitigation of growth of metallic crystalline structures." This nanocomposite coating composition is designed to address the issue of whisker growth from metallic surfaces, specifically targeting the spontaneous growth of tin whiskers. The coating comprises a polymer matrix that includes a base polymer and insulating material nanoplatelets, such as clay nanoplatelets, formulated to create a conformal coating that enhances the reliability of electronic devices by reducing the risk of short-circuits caused by whiskers bridging gaps.

Career Highlights

Geoffrey is currently affiliated with Loughborough University, where he leverages his expertise in materials science. His work primarily focuses on developing advanced coating solutions that enhance the performance and longevity of electronic components. With a strong foundation in research and innovation, he continues to push the boundaries of technology in his field.

Collaborations

Throughout his career, Geoffrey has collaborated with notable colleagues, including Mark Andrew Ashworth and Helen Elizabeth Pearson. These partnerships have enabled him to bring interdisciplinary approaches to his research, fostering a rich environment for innovation and discovery.

Conclusion

Geoffrey David Wilcox exemplifies the spirit of innovation through his groundbreaking patent and collaborative efforts. His work not only contributes to the academic community at Loughborough University but also holds significant implications for the electronics industry, paving the way for safer and more reliable technologies.

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