New York, NY, United States of America

Ellane J Park


Average Co-Inventor Count = 3.0

ph-index = 1


Company Filing History:


Years Active: 2016

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1 patent (USPTO):Explore Patents

Title: **Ellane J Park: Innovator in Nanotechnology from New York**

Introduction

Ellane J Park is a distinguished inventor based in New York, NY, known for her contributions to the field of nanotechnology. With a singular patent to her name, she has demonstrated significant innovation in the functionalization of surfaces using nanoparticles. Her work not only enhances material properties but also opens new avenues in various scientific applications.

Latest Patents

Ellane's patent focuses on the "Modification of surfaces with nanoparticles". This invention outlines methods for functionalizing a substrate's surface with nanoparticles, which involves attaching photoactive linkers to nanoparticles. These linkers enable a reaction between the nanoparticles and the surface, facilitating the attachment of reactive groups upon irradiation. The result is a substrate that is effectively modified at the nanoscopic level, which can have far-reaching implications in material science.

Career Highlights

Ellane J Park is affiliated with Columbia University in the City of New York, where she has applied her research to expand the understanding and utilization of nanoparticles in various applications. Her dedication to pushing the boundaries of nanotechnology has established her as a notable figure in her field.

Collaborations

Throughout her career, Ellane has collaborated with esteemed colleagues such as Nicholas J Turro and Jeffrey T Koberstein. These collaborations have not only enriched her work but have contributed to the advancement of research in nanotechnology as a whole.

Conclusion

Ellane J Park is a remarkable inventor whose innovative approach to modifying surfaces with nanoparticles has set new standards in nanotechnology. Her continued work, supported by collaborations and her position at Columbia University, promises to leave a lasting impact in the realm of functional materials. As developments in this field progress, her contributions will undoubtedly play a crucial role in shaping the future of material science and applications.

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