Oxford, MS, United States of America

Nathan Hammer


Average Co-Inventor Count = 3.0

ph-index = 1


Company Filing History:


Years Active: 2024

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1 patent (USPTO):Explore Patents

Title: Nathan Hammer: Innovating Biological Imaging through NIR II Dye Technology

Introduction

Nathan Hammer is an accomplished inventor based in Oxford, MS, renowned for his contributions to the field of biological imaging and optoelectronic devices. With a focus on developing innovative fluorescent dyes, Hammer has achieved recognition for his work in the near-infrared II (NIR II) range of the electromagnetic spectrum. His pioneering research is set to advance imaging techniques in biological samples while ensuring safety and efficiency.

Latest Patents

Hammer holds a patent titled "Design, synthesis, and photophysical properties of a novel NIR II dye for biological imaging and optoelectronic devices." This patent encompasses the development of small organic fluorescent dyes that can absorb and emit light in the NIR II range. Notably, the dyes are characterized by their ease of production, water solubility, tunable properties, and biocompatibility, making them ideal for various applications in imaging and devices.

Career Highlights

Throughout his career, Nathan Hammer has collaborated with leading educational institutions such as the University of Mississippi and Mississippi State University. His innovative research has significantly contributed to advancing fluorescence technologies while addressing key challenges in biological imaging.

Collaborations

In his journey, Hammer has had the privilege of working alongside esteemed colleagues, including Jared Heath Delcamp and Colleen Scott. These collaborations have fostered a rich environment for innovation, enabling the exploration of new ideas and enhancing research outcomes.

Conclusion

Nathan Hammer’s commitment to innovation in the field of biological imaging through the development of NIR II dyes is noteworthy. With one patent to his name and partnerships with reputable universities, his contributions hold the potential to transform imaging techniques and optoelectronic devices, paving the way for further advancements in this critical area of science.

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