Madison, WI, United States of America

Padma Gopalan

USPTO Granted Patents = 35 

 

Average Co-Inventor Count = 3.0

ph-index = 5

Forward Citations = 106(Granted Patents)


Company Filing History:


Years Active: 2012-2024

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35 patents (USPTO):Explore Patents

Title: Innovator Padma Gopalan: Pioneering Nanostructure Transfer and Carbon Nanotube Films

Introduction

Padma Gopalan, located in Madison, WI, is a notable inventor recognized for his impactful contributions to the field of nanotechnology. With an impressive portfolio of 35 patents, Gopalan's work is at the forefront of innovations that drive advancements in materials science and engineering.

Latest Patents

Among his most recent patents, Gopalan has developed methods for the **Transfer of Nanostructures Using Crosslinkable Copolymer Films**. This innovative approach involves the transfer of nanostructures from a first substrate to another using a specially designed copolymer. Compared to traditional poly(methyl methacrylate) homopolymers, these crosslinkable copolymers exhibit stronger bonding properties to the first substrate, enabling even ultra-narrow nanostructures to be transferred with high yields.

Another significant patent Gopalan holds is for **Two-Dimensional Carbon Nanotube Liquid Crystal Films for Wafer-Scale Electronics**. This patent details a method for forming aligned carbon nanotube films on substrate surfaces. By utilizing a liquid/liquid interface and leveraging self-organization through liquid crystal phenomena, Gopalan's technique allows for the deposition of large-area, wafer-scale films of carbon nanotubes, making the process continuous and scalable.

Career Highlights

Padma Gopalan has had an illustrious career associated with the Wisconsin Alumni Research Foundation, where he has made substantial advancements in nanotechnology. His innovative spirit and dedication to research have led to multiple patents that are changing the landscape of materials science.

Collaborations

Throughout his career, Gopalan has collaborated with notable researchers, such as Michael Scott Arnold and Myungwoong Kim. These collaborations have fostered a fruitful exchange of ideas and methodologies, enhancing the scope and impact of their respective works in the scientific community.

Conclusion

Padma Gopalan stands out as a formidable inventor whose contributions to nanostructure transfer and carbon nanotube technology have profound implications for future advancements in electronics and materials engineering. His patents not only reflect his creativity and expertise but also his commitment to pushing the boundaries of innovation. As technology continues to evolve, Gopalan's work is sure to inspire future generations of scientists and inventors.

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