Arlington, VA, United States of America

Xuefeng Mei


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 6(Granted Patents)


Company Filing History:


Years Active: 2011

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1 patent (USPTO):Explore Patents

Title: Innovations of Xuefeng Mei in Chiral Compounds

Introduction

Xuefeng Mei is an accomplished inventor based in Arlington, VA, known for his significant contributions to the field of chemistry. His work primarily focuses on the development of chiral compounds and their applications in sensing technologies. With one patent to his name, Mei has made strides in enhancing the detection of analytes through innovative methods.

Latest Patents

Xuefeng Mei holds a patent for "Chiral 1,8-diarylnaphthalenes, methods of making them, and their use as sensors." This invention relates to 1,8-diarylnaphthalene compounds, which have unique properties that make them suitable for various applications. The patent details methods for synthesizing these compounds, including N-oxides of 1,8-diarylnaphthalenes. Notably, the invention emphasizes the use of these compounds in detecting metal ions by monitoring their fluorescence. Additionally, it provides methods for determining the enantiomeric purity of analytes, particularly those capable of hydrogen bonding.

Career Highlights

Xuefeng Mei is affiliated with Georgetown University, where he conducts research and collaborates with fellow scientists. His work has garnered attention for its potential applications in analytical chemistry and materials science. Mei's innovative approach to developing chiral compounds has positioned him as a notable figure in his field.

Collaborations

One of Xuefeng Mei's key collaborators is Christian Wolf. Their partnership has contributed to advancing research in the area of chiral compounds and their applications.

Conclusion

Xuefeng Mei's contributions to the field of chemistry, particularly through his patent on chiral 1,8-diarylnaphthalenes, highlight his innovative spirit and dedication to scientific advancement. His work continues to influence the development of new sensing technologies.

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