Canton, MA, United States of America

Daniel Skiba

USPTO Granted Patents = 1 

Average Co-Inventor Count = 4.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: Inventor Spotlight: Daniel Skiba

Introduction

Daniel Skiba, an innovative inventor based in Canton, MA, has made notable contributions to the field of advanced materials. With a patent to his name, he has developed groundbreaking technology that merges carbon nanotubes and graphene in an application that promises to revolutionize radio frequency technology.

Latest Patents

Skiba's patent, titled "Transparent Radio Frequency Antenna and EMI Shield," showcases his inventive ingenuity. This patent involves a unique printed carbon nanotube and/or graphene hybrid antenna, featuring a conductive layer composed of a metal mesh or a nanowire layer on a substrate. An essential component of this invention is the Signal Enhancement Layer (SEL), made from ink that incorporates carbon nanotubes and/or graphene. The post-processed design results in a transparent antenna and EMI shield that not only functions effectively but is aesthetically suitable for various applications.

Career Highlights

Daniel currently works at Chasm Advanced Materials, Inc., where he utilizes his expertise in materials science to push the boundaries of innovation. His work focuses on integrating nanotechnology into practical solutions that address contemporary challenges in electronics and communication.

Collaborations

Throughout his career, Daniel has collaborated with esteemed colleagues such as Robert F. Praino, Jr. and David J. Arthur. These partnerships have fostered an environment of creative innovation, allowing for the development of pioneering technologies that leverage the unique properties of advanced materials.

Conclusion

With a promising patent and a career dedicated to the advancement of technology, Daniel Skiba stands out as a prominent inventor in the field of radio frequency solutions. His work not only exemplifies the potential of carbon nanotubes and graphene but also reflects a commitment to innovation that may inspire future breakthroughs in materials science.

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