Shanghai, China

Jia Huang

USPTO Granted Patents = 2 

Average Co-Inventor Count = 3.7

ph-index = 1


Company Filing History:


Years Active: 2017-2024

where 'Filed Patents' based on already Granted Patents

2 patents (USPTO):

Title: Jia Huang: Innovator in Sensor Technology

Introduction

Jia Huang is an esteemed inventor based in Shanghai, China, known for her contributions to the field of sensor technology. With a total of two patents, she has been instrumental in developing innovative methods and materials that enhance the functionality and performance of electronic devices.

Latest Patents

Jia Huang's recent patents include pivotal advancements in ionic gel film preparation and tube-in-a-tube electronic sensors. Her first patent details a comprehensive ionic gel film preparation method that combines a vinyl-free ionic liquid with a vinyl-containing ionic liquid and a specific additive to create a homogeneous solution. This solution is then used to produce an ionic gel film on a substrate, which possesses impressive device consistency, high conductivity, and excellent sensing performance. Her second patent focuses on tube-in-a-tube electronic materials, utilizing covalently functionalized double-walled carbon nanotubes to construct advanced electronic chemical sensors, illustrating her innovative approach to electronic materials.

Career Highlights

Throughout her career, Jia Huang has collaborated with prominent institutions such as the University of Maryland, College Park, and Tongji University. Her work has not only contributed to her patent accomplishments but has also established her as a respected figure in the field of sensor technology.

Collaborations

In her journey as an inventor, Jia Huang has worked alongside notable colleagues such as YuHuang Wang and Allen Ng. These collaborations have enhanced her research and brought forth innovative ideas and solutions in technology.

Conclusion

Jia Huang's impact on sensor technology through her inventive patents demonstrates her dedication to advancing the field. With her continued research and development efforts, she remains a vital contributor to innovations that promise to change how sensors are utilized in various applications.

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