Tokyo, Japan

Tatsuki Nakano


Average Co-Inventor Count = 5.0

ph-index = 1


Company Filing History:


Years Active: 2021

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1 patent (USPTO):Explore Patents

Title: **Tatsuki Nakano: A Pioneer in Polyamine Analysis**

Introduction

Tatsuki Nakano is an innovative inventor based in Tokyo, Japan, known for his contributions to the field of analytical chemistry. With a focus on developing methods that enhance the analysis of complex compounds, Nakano has made significant strides in his research.

Latest Patents

Tatsuki Nakano holds a patent for a unique method entitled "Polyamine and tyramine analysis method using pyrene containing fluorescence derivatization reagent and excimer fluorescence." This invention focuses on analyzing polyamines, which contain multiple amino groups in a single molecule, or monoamines that feature both an amino group and a phenolic hydroxyl group. The patent describes a method that utilizes excimer fluorescence emitted from reactions with a specific fluorogenic reagent, particularly emphasizing the use of a derivative known as 2-chloro-4-methoxy-6-(4-(pyren-1-yl) butoxy)-1,3,5-triazine.

Career Highlights

Throughout his career, Tatsuki has been affiliated with notable organizations such as Shimadzu Corporation and Shizuoka Prefecture Public University Corporation. His work in these institutions has enabled him to develop advanced methodologies and drive innovation in the analytical chemistry landscape.

Collaborations

Tatsuki Nakano has collaborated with esteemed colleagues, including Makoto Ogaito and Azusa Uchida. These partnerships have enriched his research and provided valuable insights into the complexities of chemical analysis.

Conclusion

Tatsuki Nakano exemplifies the spirit of innovation in the analytical sciences. His development of advanced analytical methods for polyamines and monoamines marks a significant contribution to the field, showcasing the importance of collaboration and research in driving technological advancements. Nakano's work not only enhances our understanding of complex chemical compounds but also sets a precedent for future innovations in analytical methods.

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