Seoul, South Korea

Lien Thi Do


Average Co-Inventor Count = 7.0

ph-index = 1


Company Filing History:


Years Active: 2023

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1 patent (USPTO):Explore Patents

Innovative Contributions of Lien Thi Do in Catalysis

Introduction

Lien Thi Do is an innovative inventor based in Seoul, South Korea. She has made significant strides in the field of catalysis with her inventive contributions aimed at enhancing the efficiency of methane conversion processes. Her work is particularly notable in the area of oxidative coupling reactions.

Latest Patents

Lien Thi Do holds a patent for a groundbreaking invention titled "Catalyst for oxidative coupling reaction of methane, method for preparing the same, and method for oxidative coupling reaction of methane using the same." This patent discloses a novel catalyst that includes a mixed metal oxide comprising sodium (Na), tungsten (W), manganese (Mn), barium (Ba), and titanium (Ti). This innovative catalyst facilitates the effective production of paraffins, such as ethane and propane, as well as olefins like ethylene and propylene. The method outlined in her patent demonstrates high efficiency in methane conversion, showcasing the significant potential of her invention.

Career Highlights

Lien is currently affiliated with the Korea Institute of Science and Technology, a leading research establishment focused on advancing scientific knowledge and technologies. Her role there has allowed her to further explore and enhance her expertise in catalysis and related fields, contributing to the institution’s reputation for cutting-edge research.

Collaborations

Throughout her career, Lien Thi Do has had the opportunity to work alongside esteemed colleagues, including Jeong-Myeong Ha and Jae Wook Choi. These collaborations have enriched her research endeavors and have played a pivotal role in the development of her innovative patent.

Conclusion

Lien Thi Do's contributions to the field of catalysis highlight the importance of innovation in developing efficient methods for chemical processes. Her patent represents a significant advancement in the oxidative coupling of methane, demonstrating her commitment to enhancing industrial applications through her inventive spirit. As she continues her work at the Korea Institute of Science and Technology, the scientific community looks forward to future developments that may arise from her ongoing research.

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